Use isobutan instead of hydrogen for the collider
This commit is contained in:
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45479bf153
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@ -15,8 +15,8 @@ Important facts:
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- Iron Age (TA1) - simple tools like coal pile, coal burner, gravel sieve, hammer for getting ores and making goods
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- Steam Age (TA2) - Simple machines that are powered by steam engines and drive axles
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- Oil Age (TA3) - More modern machines that are powered by electricity.
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- Now Age (TA4) - Electricity from renewable energy sources such as sun and wind.
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- Future Age (TA5) - Machines to overcome space and time, new sources of energy and other achievements.
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- Present (TA4) - Electricity from renewable energy sources such as sun and wind.
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- Future (TA5) - Machines to overcome space and time, new sources of energy and other achievements.
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- Since the levels build on each other, all ages have to be run through one after the other
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In contrast to TechPack, the resources are more limited and it is much more difficult to pass all levels.
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@ -185,7 +185,7 @@ techage.register_node({"techage:ta4_collider_pipe_inlet"}, {
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-- Used by the detector to check for gas pressure
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function techage.gas_inlet_check(pos, node, meta, nvm)
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nvm.liquid = nvm.liquid or {}
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if nvm.liquid.amount == GAS_CAPA and nvm.liquid.name == "techage:hydrogen" then
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if nvm.liquid.amount == GAS_CAPA and nvm.liquid.name == "techage:isobutane" then
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return true
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end
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return false, "no gas"
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@ -121,7 +121,7 @@ minetest.register_node("techage:ta4_magnet", {
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nvm.tube_damage = nil
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return -1
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elseif nvm.liquid.amount == CAPACITY and
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nvm.liquid.name == "techage:hydrogen" and
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nvm.liquid.name == "techage:isobutane" and
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nvm.consumed == PWR_NEEDED then
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return 0
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end
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@ -217,7 +217,7 @@ techage.register_node({"techage:ta4_magnet"}, {
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if payload and tonumber(payload) == nvm.number then
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if not nvm.liquid or not nvm.liquid.amount or nvm.liquid.amount < CAPACITY then
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return false, "no gas"
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elseif nvm.liquid.name ~= "techage:hydrogen" then
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elseif nvm.liquid.name ~= "techage:isobutane" then
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return false, "wrong gas"
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elseif nvm.consumed ~= PWR_NEEDED then
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return false, "no power"
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@ -290,3 +290,16 @@ minetest.register_craft({
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{'techage:aluminum', 'default:steel_ingot', ''},
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},
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})
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minetest.register_lbm({
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label = "Repair Magnets",
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name = "techage:magnets",
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nodenames = {"techage:ta4_magnet", "techage:ta4_collider_pipe_inlet"},
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run_at_every_load = false,
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action = function(pos, node)
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local nvm = techage.get_nvm(pos)
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if nvm.liquid and nvm.liquid.name == "techage:hydrogen" then
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nvm.liquid.name = "techage:isobutane"
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end
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end,
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})
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@ -139,7 +139,7 @@ techage.manual_DE.aTitel = {
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"3,TechAge Programmer",
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"3,TechAge Kelle / Trowel",
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"3,TA3 Bohrgestängezange / TA3 Drill Pipe Wrench",
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"1,TA4: Jetzt-Zeitalter",
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"1,TA4: Gegenwart",
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"2,Windkraftanlage",
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"3,TA4 Windkraftanlage / Wind Turbine",
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"3,TA4 Windkraftanlagengondel / Wind Turbine Nacelle",
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@ -258,10 +258,10 @@ techage.manual_DE.aText = {
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"TA3: Ölzeitalter (Oil Age)\n"..
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"Suche und fördere Öl\\, baute Schienenwege zur Ölbeförderung. Ein Kraftwerk liefert den notwendigen Strom für deine Maschinen. Elektrisches Licht erhellt deine Industrieanlagen.\n"..
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"\n"..
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"TA4: Jetzt-Zeitalter (Now Age)\n"..
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"TA4: Gegenwart (Present)\n"..
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"Regenerative Energiequellen wie Wind\\, Sonne und Biokraft helfen dir\\, das Ölzeitalter zu verlassen. Mit modernen Technologien und intelligenten Maschinen machst du dich auf in die Zukunft.\n"..
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"\n"..
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"TA5: Zukunft (Future Age)\n"..
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"TA5: Zukunft (Future)\n"..
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"Maschinen zur Überwindung von Raum und Zeit\\, neue Energiequellen und andere Errungenschaften prägen dein Leben.\n"..
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"\n"..
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"Hinweis: Mit Klicken auf die Pluszeichen kommst du in die Unterkapitel dieser Anleitung.\n"..
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@ -1478,7 +1478,8 @@ techage.manual_DE.aText = {
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"Beim Cracken werden lange Kette von Kohlenwasserstoffen unter Verwendung eines Katalysator in kurze Ketten gebrochen.\n"..
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"Als Katalysator dient Gibbsitpulver (wird nicht verbraucht). Damit kann Bitumen in Schweröl\\, Schweröl in Naphtha und Naphtha in Benzin umgewandelt werden.\n"..
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"\n"..
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"Bei der Hydrierung werden einem Molekül Paare von Wasserstoffatomen hinzugefügt\\, um kurzkettige Kohlenwasserstoffe in lange umzuwandeln. Hier wird Eisenpulver als Katalysator benötigt (wird nicht verbraucht). Damit kann Benzin in Naphtha\\, \n"..
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"Bei der Hydrierung werden einem Molekül Paare von Wasserstoffatomen hinzugefügt\\, um kurzkettige Kohlenwasserstoffe in lange umzuwandeln.\n"..
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"Hier wird Eisenpulver als Katalysator benötigt (wird nicht verbraucht). Damit kann Propangas in Isobutan\\, Isobutan in Benzin\\, Benzin in Naphtha\\,\n"..
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"Naphtha in Schweröl und Schweröl in Bitumen umgewandelt werden.\n"..
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"\n"..
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"\n"..
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@ -1770,7 +1771,7 @@ techage.manual_DE.aText = {
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"\n"..
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" - Der Detektor ist das Herz der Anlage. Hier finden die wissenschaftlichen Experimente statt. Der Detektor ist 3x3x7 Blöcke groß.\n"..
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" - Die TA4 Collider Detector Magnete (22 Stück) müssen über jeweils 5 Blöcken der TA4 Vakuumröhre miteinander verbunden werden. Jeder Magnet benötigt zusätzlich Strom und einen Gasanschluss für die Kühlung. Das ganze bildet (wie rechts im Plan abgebildet) ein Quadrat mit einer Kantenlänge von 37 Metern.\n"..
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" - Zusätzlich wird eine Kühlung benötigt\\, welche zusätzlich beim Detektor aufgebaut werden muss. Für die Kühlung wird Wasserstoff benötigt.\n"..
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" - Zusätzlich wird eine Kühlung benötigt\\, welche zusätzlich beim Detektor aufgebaut werden muss. Für die Kühlung wird Isobutan benötigt.\n"..
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" - Die Anlage benötigt einiges an Strom. Daher ist eine eigene Stromversorgung sinnvoll.\n"..
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"\n"..
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"Der Plan zeigt die Anlage von oben:\n"..
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@ -1811,21 +1812,22 @@ techage.manual_DE.aText = {
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"Für den Teilchenbeschleunigers wird außer den Blöcken für den Bau folgendes benötigt:\n"..
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"\n"..
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" - Strom (145 ku)\n"..
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" - TA4 Tank mit mindestens 250 Einheiten Wasserstoff\n"..
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" - TA4 Tank mit mindestens 250 Einheiten Isobutan\n"..
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"\n"..
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"Beim Aufbau des Teilchenbeschleunigers empfiehlt sich folgende Reihenfolge:\n"..
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"\n"..
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" - Einen Forceload Block setzen. Nur der Detektor mit der Kühlanlage muss sich im Bereich des Forceload Blockes befinden.\n"..
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" - Den Worker-Block setzen\\, mit Items füllen und den Detektor über das Menü aufbauen\n"..
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" - Den Ring mit Röhren und Magneten aufbauen\n"..
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" - Alle Magneten und den Detektor mit Stromkabel verbinden\n"..
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" - Alle Magneten und den Detektor mit den gelben Röhren verbinden und mit Wasserstoff füllen\n"..
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" - Alle Magnete und den Detektor mit Stromkabel verbinden\n"..
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" - Alle Magnete und den Detektor mit den gelben Röhren verbinden und das Isobutan mit einer Pumpe in das Röhrensystem pumpen.\n"..
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" - Eine TA4 Pumpe als Vakuumpumpe auf dem Detektor installieren und einschalten (es wird kein zusätzlicher Tank benötigt). Geht die Pumpe in den \"standby\"\\, ist das Vakuum hergestellt. Dies dauert einige Sekunden\n"..
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" - den Kühler (Wärmetauscher) aufbauen und mit dem Stromkabel verbinden\n"..
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" - Das TA4 Terminal vor den Detektor setzen und über 'connect <nummer>' mit dem Detektor verbinden\n"..
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" - Die Stromversorgung einschalten/herstellen\n"..
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" - den Kühler (Wärmetauscher) einschalten\n"..
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" - den Detektor über 'start' am TA4 Terminal einschalten. Der Detektor geht nach einigen Prüfschritten in den Normalbetrieb oder gibt einen Fehler aus.\n"..
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" - Der Teilchenbeschleunigers muss im Dauerbetrieb laufen und liefert dann nach und nach Erfahrungspunkte. Für 10 Punkte muss der Teilchenbeschleuniger schon einige Stunden laufen.\n"..
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"\n"..
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"\n"..
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"\n",
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@ -139,7 +139,7 @@ techage.manual_EN.aTitel = {
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"3,TechAge Programmer",
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"3,TechAge Trowel / Trowel",
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"3,TA3 drill pipe wrench",
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"1,TA4: Now Age",
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"1,TA4: Present",
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"2,Wind Turbine",
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"3,TA4 Wind Turbine",
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"3,TA4 Wind Turbine Nacelle",
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@ -257,10 +257,10 @@ techage.manual_EN.aText = {
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"TA3: Oil Age\n"..
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"Find and extract oil\\, built railways for oil transportation. A power plant provides the necessary electricity for your machines. Electric light illuminates your industrial plants.\n"..
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"\n"..
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"TA4: Now Age\n"..
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"TA4: Present\n"..
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"Renewable energy sources such as wind\\, sun and biofuels help you to leave the oil age. With modern technologies and intelligent machines you set out into the future.\n"..
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"\n"..
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"TA5: Future Age\n"..
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"TA5: Future\n"..
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"Machines to overcome space and time\\, new sources of energy and other achievements shape your life.\n"..
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"\n"..
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"Note: With a click on the plus sign you get into the subchapters of this manual.\n"..
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@ -1475,9 +1475,9 @@ techage.manual_EN.aText = {
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"Cracking breaks long chains of hydrocarbons into short chains using a catalyst.\n"..
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"Gibbsite powder serves as a catalyst (is not consumed). It can be used to convert bitumen into fueloil\\, fueloil into naphtha and naphtha into gasoline.\n"..
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"\n"..
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"In hydrogenation\\, pairs of hydrogen atoms are added to a molecule to convert short-chain hydrocarbons into long ones. \n"..
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"Here iron powder is required as a catalyst (is not consumed). It can be used to convert gasoline into naphtha\\,\n"..
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"naphtha into fueloil\\, and fueloil into bitumen.\n"..
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"In hydrogenation\\, pairs of hydrogen atoms are added to a molecule to convert short-chain hydrocarbons into long ones.\n"..
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"Here iron powder is required as a catalyst (is not consumed). It can be used to convert gas (propane) into isobutane\\,\n"..
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"isobutane into gasoline\\, gasoline into naphtha\\, naphtha into fueloil\\, and fueloil into bitumen.\n"..
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"\n"..
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"\n"..
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"\n",
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@ -1767,7 +1767,7 @@ techage.manual_EN.aText = {
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"\n"..
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" - The detector is the heart of the system. This is where the scientific experiments take place. The detector is 3x3x7 blocks in size.\n"..
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" - The TA4 Collider Detector magnets (22 pieces) must be connected to each other via 5 blocks of the TA4 vacuum tube. Each magnet also requires electricity and a gas connection for cooling. The whole thing forms (as shown in the plan on the right) a square with an edge length of 37 meters.\n"..
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" - In addition\\, cooling is required\\, which must also be installed at the detector. Hydrogen is required for cooling.\n"..
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" - In addition\\, cooling is required\\, which must also be installed at the detector. Isobutane is required for cooling.\n"..
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" - The system requires quite a bit of electricity. Therefore\\, it makes sense to have your own power supply.\n"..
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"\n"..
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"The plan shows the facility from above:\n"..
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@ -1808,7 +1808,7 @@ techage.manual_EN.aText = {
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"In addition to the building blocks\\, the following is required for the collider:\n"..
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"\n"..
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" - electricity (145 ku)\n"..
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" - TA4 tank with at least 250 units of hydrogen\n"..
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" - TA4 tank with at least 250 units of isobutane\n"..
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"\n"..
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"The following sequence is recommended when setting up the collider:\n"..
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"\n"..
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@ -1816,13 +1816,14 @@ techage.manual_EN.aText = {
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" - Set the worker block\\, fill it with items and set up the detector via the menu\n"..
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" - Build the ring with tubes and magnets\n"..
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" - Connect all magnets and the detector with power cables\n"..
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" - Connect all magnets and the detector to the yellow tubes and fill with hydrogen\n"..
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" - Connect all magnets and the detector with the yellow tubes and pump the isobutane into the tube system with a pump\n"..
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" - Install a TA4 pump as a vacuum pump on the detector and switch it on (no additional tank is required). If the pump goes into \"standby\"\\, the vacuum is established. This will take a few seconds\n"..
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" - assemble the cooler (heat exchanger) and connect it to the power cable\n"..
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" - Place the TA4 terminal in front of the detector and connect it to the detector via 'connect <number>'\n"..
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" - Switch on / connect the power supply\n"..
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" - switch on the cooler (heat exchanger)\n"..
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" - Switch on the detector via 'start' on the TA4 terminal. After a few test steps\\, the detector goes into normal operation or outputs an error.\n"..
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" - The collider has to run continuously and then gradually delivers experience points. For 10 points\\, the collider has to run for a few hours\n"..
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"\n"..
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"\n"..
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"\n",
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@ -363,26 +363,10 @@ techage.register_node({"techage:heatexchanger2"}, {
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else
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stop_sound(pos)
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end
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-- convert to v1
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if not nvm.capa_max then
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local pos1 = {x = pos.x, y = pos.y - 1, z = pos.z}
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local nvm1 = techage.get_nvm(pos1)
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nvm.capa_max = nvm1.capa_max or 1
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nvm.capa = nvm1.capa or 0
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local own_num = techage.add_node(pos, "techage:heatexchanger2")
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State:node_init(pos, nvm, own_num)
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if nvm1.running then
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State:start(pos, nvm)
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end
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M(pos):set_string("owner", M(pos1):get_string("owner"))
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M(pos):set_string("infotext", S("TA4 Heat Exchanger")..": "..own_num)
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M(pos1):set_string("node_number", "")
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M(pos1):set_string("infotext", "")
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techage.del_mem(pos1)
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Cable:after_place_node(pos)
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Cable:after_place_node(pos1)
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-- Attempt to restart the system as the heat exchanger goes into error state
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-- when parts of the storage block are unloaded.
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if nvm.techage_state == techage.FAULT then
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start_node(pos, nvm)
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end
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end,
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})
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@ -15,7 +15,8 @@
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In hydrogenation, pairs of hydrogen atoms are added to a molecule to convert short-chain
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hydrocarbons into long ones.
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Here iron powder is required as a catalyst (is not consumed).
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It can be used to convert gasoline into naphtha, naphtha into fueloil, and fueloil into bitumen.
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It can be used to convert gas (propan) into isobutane, isobutane into gasoline, gasoline into naphtha,
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naphtha into fueloil, and fueloil into bitumen.
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]]--
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@ -46,9 +47,27 @@ techage.recipes.add("ta4_doser", {
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-- Hydrogenate
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techage.recipes.add("ta4_doser", {
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output = "techage:bitumen 1",
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output = "techage:isobutane 1",
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input = {
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"techage:fueloil 1",
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"techage:gas 1",
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"techage:hydrogen 1",
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},
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catalyst = "techage:iron_powder",
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})
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techage.recipes.add("ta4_doser", {
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output = "techage:gasoline 1",
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input = {
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"techage:isobutane 1",
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"techage:hydrogen 1",
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},
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catalyst = "techage:iron_powder",
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})
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techage.recipes.add("ta4_doser", {
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output = "techage:naphtha 1",
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input = {
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"techage:gasoline 1",
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"techage:hydrogen 1",
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},
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catalyst = "techage:iron_powder",
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@ -64,9 +83,9 @@ techage.recipes.add("ta4_doser", {
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})
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techage.recipes.add("ta4_doser", {
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output = "techage:naphtha 1",
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output = "techage:bitumen 1",
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input = {
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"techage:gasoline 1",
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"techage:fueloil 1",
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"techage:hydrogen 1",
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},
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catalyst = "techage:iron_powder",
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@ -8,7 +8,7 @@
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AGPL v3
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See LICENSE.txt for more information
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TA3 Petroleum types: bitumen, fueloil, naphtha, gasoline, gas
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TA3 Petroleum types: bitumen, fueloil, naphtha, gasoline, isobutane, gas (propan)
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]]--
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@ -39,6 +39,12 @@ minetest.register_craftitem("techage:gasoline", {
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groups = {ta_liquid = 1},
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})
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minetest.register_craftitem("techage:isobutane", {
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description = S("TA4 Isobutane"),
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inventory_image = "techage_isobutane_inv.png",
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groups = {ta_liquid = 1},
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})
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minetest.register_craftitem("techage:gas", {
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description = S("TA3 Propane"),
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inventory_image = "techage_gas_inv.png",
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@ -57,6 +63,18 @@ minetest.register_craftitem("techage:ta3_cylinder_large_gas", {
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stack_max = 1,
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})
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minetest.register_craftitem("techage:ta4_cylinder_small_isobutane", {
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description = S("Isobutane Cylinder Small"),
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inventory_image = "techage_gas_cylinder_small.png^[colorize:#18d618:120",
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stack_max = 1,
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})
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minetest.register_craftitem("techage:ta4_cylinder_large_isobutane", {
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description = S("Isobutane Cylinder Large"),
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inventory_image = "techage_gas_cylinder_large.png^[colorize:#18d618:120",
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stack_max = 1,
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})
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minetest.register_craftitem("techage:ta3_barrel_bitumen", {
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description = S("TA3 Bitumen Barrel"),
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inventory_image = "techage_barrel_inv.png^[colorize:#000000:120",
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@ -113,6 +131,12 @@ minetest.register_craft({
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burntime = 30,
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})
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minetest.register_craft({
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type = "fuel",
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recipe = "techage:isobutane",
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burntime = 40,
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})
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minetest.register_craft({
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type = "fuel",
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recipe = "techage:gasoline",
|
||||
@ -138,6 +162,7 @@ techage.register_liquid("techage:ta3_barrel_fueloil", "techage:ta3_barrel_empty"
|
||||
techage.register_liquid("techage:ta3_barrel_naphtha", "techage:ta3_barrel_empty", 10, "techage:naphtha")
|
||||
techage.register_liquid("techage:ta3_barrel_gasoline", "techage:ta3_barrel_empty", 10, "techage:gasoline")
|
||||
techage.register_liquid("techage:ta3_cylinder_large_gas", "techage:ta3_cylinder_large", 6, "techage:gas")
|
||||
techage.register_liquid("techage:ta3_cylinder_large_isobutane", "techage:ta3_cylinder_large", 6, "techage:isobutane")
|
||||
|
||||
techage.register_liquid("techage:ta3_canister_oil", "techage:ta3_canister_empty", 1, "techage:oil_source")
|
||||
techage.register_liquid("techage:ta3_canister_bitumen", "techage:ta3_canister_empty", 1, "techage:bitumen")
|
||||
@ -145,4 +170,5 @@ techage.register_liquid("techage:ta3_canister_fueloil", "techage:ta3_canister_em
|
||||
techage.register_liquid("techage:ta3_canister_naphtha", "techage:ta3_canister_empty", 1, "techage:naphtha")
|
||||
techage.register_liquid("techage:ta3_canister_gasoline", "techage:ta3_canister_empty", 1, "techage:gasoline")
|
||||
techage.register_liquid("techage:ta3_cylinder_small_gas", "techage:ta3_cylinder_small", 1, "techage:gas")
|
||||
techage.register_liquid("techage:ta3_cylinder_small_isobutane", "techage:ta3_cylinder_small", 1, "techage:isobutane")
|
||||
|
||||
|
@ -8,8 +8,8 @@ Techage represents five technological ages:
|
||||
- Iron Age (TA1) - Simple tools like coal pile, coal burner, gravel sieve, hammer for getting ores and making goods
|
||||
- Steam Age (TA2) - Simple machines that are powered by steam engines and drive axles
|
||||
- Oil Age (TA3) - More modern machines that are powered by electricity
|
||||
- Now Age (TA4) - Electricity from renewable energy sources such as sun and wind
|
||||
- Future Age (TA5)
|
||||
- Present (TA4) - Electricity from renewable energy sources such as sun and wind
|
||||
- Future (TA5) - Machines to overcome space and time, new sources of energy and other achievements shape your life
|
||||
|
||||
Since the levels build on each other, all ages have to be run through one after the other.
|
||||
|
||||
@ -62,7 +62,7 @@ Since the levels build on each other, all ages have to be run through one after
|
||||
|
||||
|
||||
|
||||
## Now Age (TA4)
|
||||
## Present (TA4)
|
||||
|
||||
1. Build solar and wind plants to get renewable energy
|
||||
2. Build a Thermal Energy Storage to store the energy
|
||||
@ -73,6 +73,11 @@ Since the levels build on each other, all ages have to be run through one after
|
||||
|
||||
|
||||
|
||||
## Future (TA5)
|
||||
|
||||
tbd.
|
||||
|
||||
|
||||
## Power Consumption
|
||||
|
||||
| TechAge Machine | TA2 [ku] | TA3 [ku] | TA4 [ku] |
|
||||
|
@ -11,10 +11,10 @@ Baue eine Dampfmaschine mit Antriebsachsen und betreibe damit deine ersten Masch
|
||||
TA3: Ölzeitalter (Oil Age)
|
||||
Suche und fördere Öl, baute Schienenwege zur Ölbeförderung. Ein Kraftwerk liefert den notwendigen Strom für deine Maschinen. Elektrisches Licht erhellt deine Industrieanlagen.
|
||||
|
||||
TA4: Jetzt-Zeitalter (Now Age)
|
||||
TA4: Gegenwart (Present)
|
||||
Regenerative Energiequellen wie Wind, Sonne und Biokraft helfen dir, das Ölzeitalter zu verlassen. Mit modernen Technologien und intelligenten Maschinen machst du dich auf in die Zukunft.
|
||||
|
||||
TA5: Zukunft (Future Age)
|
||||
TA5: Zukunft (Future)
|
||||
Maschinen zur Überwindung von Raum und Zeit, neue Energiequellen und andere Errungenschaften prägen dein Leben.
|
||||
|
||||
|
||||
|
@ -11,10 +11,10 @@ Build a steam engine with drive axles and use it to operate your first ore proce
|
||||
TA3: Oil Age
|
||||
Find and extract oil, built railways for oil transportation. A power plant provides the necessary electricity for your machines. Electric light illuminates your industrial plants.
|
||||
|
||||
TA4: Now Age
|
||||
TA4: Present
|
||||
Renewable energy sources such as wind, sun and biofuels help you to leave the oil age. With modern technologies and intelligent machines you set out into the future.
|
||||
|
||||
TA5: Future Age
|
||||
TA5: Future
|
||||
Machines to overcome space and time, new sources of energy and other achievements shape your life.
|
||||
|
||||
|
||||
|
@ -1,4 +1,4 @@
|
||||
# TA4: Jetzt-Zeitalter
|
||||
# TA4: Gegenwart
|
||||
|
||||
Regenerative Energiequellen wie Wind, Sonne und Biokraft helfen dir, das Ölzeitalter zu verlassen. Mit modernen Technologien und intelligenten Maschinen machst du dich auf in die Zukunft.
|
||||
|
||||
@ -294,7 +294,8 @@ Hinweis 2: Tanks oder Silos mit verschiedenen Inhalten dürfen nicht zu einem Le
|
||||
Beim Cracken werden lange Kette von Kohlenwasserstoffen unter Verwendung eines Katalysator in kurze Ketten gebrochen.
|
||||
Als Katalysator dient Gibbsitpulver (wird nicht verbraucht). Damit kann Bitumen in Schweröl, Schweröl in Naphtha und Naphtha in Benzin umgewandelt werden.
|
||||
|
||||
Bei der Hydrierung werden einem Molekül Paare von Wasserstoffatomen hinzugefügt, um kurzkettige Kohlenwasserstoffe in lange umzuwandeln. Hier wird Eisenpulver als Katalysator benötigt (wird nicht verbraucht). Damit kann Benzin in Naphtha,
|
||||
Bei der Hydrierung werden einem Molekül Paare von Wasserstoffatomen hinzugefügt, um kurzkettige Kohlenwasserstoffe in lange umzuwandeln.
|
||||
Hier wird Eisenpulver als Katalysator benötigt (wird nicht verbraucht). Damit kann Propangas in Isobutan, Isobutan in Benzin, Benzin in Naphtha,
|
||||
Naphtha in Schweröl und Schweröl in Bitumen umgewandelt werden.
|
||||
|
||||
[ta4_reactor|plan]
|
||||
@ -691,7 +692,7 @@ Ein Teilchenbeschleuniger besteht aus einem "Ring" aus Röhren und Magneten sowi
|
||||
|
||||
- Der Detektor ist das Herz der Anlage. Hier finden die wissenschaftlichen Experimente statt. Der Detektor ist 3x3x7 Blöcke groß.
|
||||
- Die TA4 Collider Detector Magnete (22 Stück) müssen über jeweils 5 Blöcken der TA4 Vakuumröhre miteinander verbunden werden. Jeder Magnet benötigt zusätzlich Strom und einen Gasanschluss für die Kühlung. Das ganze bildet (wie rechts im Plan abgebildet) ein Quadrat mit einer Kantenlänge von 37 Metern.
|
||||
- Zusätzlich wird eine Kühlung benötigt, welche zusätzlich beim Detektor aufgebaut werden muss. Für die Kühlung wird Wasserstoff benötigt.
|
||||
- Zusätzlich wird eine Kühlung benötigt, welche zusätzlich beim Detektor aufgebaut werden muss. Für die Kühlung wird Isobutan benötigt.
|
||||
- Die Anlage benötigt einiges an Strom. Daher ist eine eigene Stromversorgung sinnvoll.
|
||||
|
||||
Der Plan zeigt die Anlage von oben:
|
||||
@ -740,21 +741,22 @@ Tritt beim `start` an einem Magneten ein Fehler auf, so wird die Nummer des Magn
|
||||
Für den Teilchenbeschleunigers wird außer den Blöcken für den Bau folgendes benötigt:
|
||||
|
||||
- Strom (145 ku)
|
||||
- TA4 Tank mit mindestens 250 Einheiten Wasserstoff
|
||||
- TA4 Tank mit mindestens 250 Einheiten Isobutan
|
||||
|
||||
Beim Aufbau des Teilchenbeschleunigers empfiehlt sich folgende Reihenfolge:
|
||||
|
||||
- Einen Forceload Block setzen. Nur der Detektor mit der Kühlanlage muss sich im Bereich des Forceload Blockes befinden.
|
||||
- Den Worker-Block setzen, mit Items füllen und den Detektor über das Menü aufbauen
|
||||
- Den Ring mit Röhren und Magneten aufbauen
|
||||
- Alle Magneten und den Detektor mit Stromkabel verbinden
|
||||
- Alle Magneten und den Detektor mit den gelben Röhren verbinden und mit Wasserstoff füllen
|
||||
- Alle Magnete und den Detektor mit Stromkabel verbinden
|
||||
- Alle Magnete und den Detektor mit den gelben Röhren verbinden und das Isobutan mit einer Pumpe in das Röhrensystem pumpen.
|
||||
- Eine TA4 Pumpe als Vakuumpumpe auf dem Detektor installieren und einschalten (es wird kein zusätzlicher Tank benötigt). Geht die Pumpe in den "standby", ist das Vakuum hergestellt. Dies dauert einige Sekunden
|
||||
- den Kühler (Wärmetauscher) aufbauen und mit dem Stromkabel verbinden
|
||||
- Das TA4 Terminal vor den Detektor setzen und über `connect <nummer>` mit dem Detektor verbinden
|
||||
- Die Stromversorgung einschalten/herstellen
|
||||
- den Kühler (Wärmetauscher) einschalten
|
||||
- den Detektor über `start` am TA4 Terminal einschalten. Der Detektor geht nach einigen Prüfschritten in den Normalbetrieb oder gibt einen Fehler aus.
|
||||
- Der Teilchenbeschleunigers muss im Dauerbetrieb laufen und liefert dann nach und nach Erfahrungspunkte. Für 10 Punkte muss der Teilchenbeschleuniger schon einige Stunden laufen.
|
||||
|
||||
[techage_ta4c|image]
|
||||
|
||||
|
@ -1,4 +1,4 @@
|
||||
# TA4: Now Age
|
||||
# TA4: Present
|
||||
|
||||
Renewable energy sources such as wind, sun and biofuels help you to leave the oil age. With modern technologies and intelligent machines you set out into the future.
|
||||
|
||||
@ -288,8 +288,8 @@ Cracking breaks long chains of hydrocarbons into short chains using a catalyst.
|
||||
Gibbsite powder serves as a catalyst (is not consumed). It can be used to convert bitumen into fueloil, fueloil into naphtha and naphtha into gasoline.
|
||||
|
||||
In hydrogenation, pairs of hydrogen atoms are added to a molecule to convert short-chain hydrocarbons into long ones.
|
||||
Here iron powder is required as a catalyst (is not consumed). It can be used to convert gasoline into naphtha,
|
||||
naphtha into fueloil, and fueloil into bitumen.
|
||||
Here iron powder is required as a catalyst (is not consumed). It can be used to convert gas (propane) into isobutane,
|
||||
isobutane into gasoline, gasoline into naphtha, naphtha into fueloil, and fueloil into bitumen.
|
||||
|
||||
|
||||
[ta4_reactor|plan]
|
||||
@ -684,7 +684,7 @@ A collider consists of a "ring" made of tubes and magnets as well as a detector
|
||||
|
||||
- The detector is the heart of the system. This is where the scientific experiments take place. The detector is 3x3x7 blocks in size.
|
||||
- The TA4 Collider Detector magnets (22 pieces) must be connected to each other via 5 blocks of the TA4 vacuum tube. Each magnet also requires electricity and a gas connection for cooling. The whole thing forms (as shown in the plan on the right) a square with an edge length of 37 meters.
|
||||
- In addition, cooling is required, which must also be installed at the detector. Hydrogen is required for cooling.
|
||||
- In addition, cooling is required, which must also be installed at the detector. Isobutane is required for cooling.
|
||||
- The system requires quite a bit of electricity. Therefore, it makes sense to have your own power supply.
|
||||
|
||||
The plan shows the facility from above:
|
||||
@ -733,7 +733,7 @@ If an error occurs on a magnet during the `start`, the number of the magnet is o
|
||||
In addition to the building blocks, the following is required for the collider:
|
||||
|
||||
- electricity (145 ku)
|
||||
- TA4 tank with at least 250 units of hydrogen
|
||||
- TA4 tank with at least 250 units of isobutane
|
||||
|
||||
The following sequence is recommended when setting up the collider:
|
||||
|
||||
@ -741,13 +741,14 @@ The following sequence is recommended when setting up the collider:
|
||||
- Set the worker block, fill it with items and set up the detector via the menu
|
||||
- Build the ring with tubes and magnets
|
||||
- Connect all magnets and the detector with power cables
|
||||
- Connect all magnets and the detector to the yellow tubes and fill with hydrogen
|
||||
- Connect all magnets and the detector with the yellow tubes and pump the isobutane into the tube system with a pump
|
||||
- Install a TA4 pump as a vacuum pump on the detector and switch it on (no additional tank is required). If the pump goes into "standby", the vacuum is established. This will take a few seconds
|
||||
- assemble the cooler (heat exchanger) and connect it to the power cable
|
||||
- Place the TA4 terminal in front of the detector and connect it to the detector via `connect <number>`
|
||||
- Switch on / connect the power supply
|
||||
- switch on the cooler (heat exchanger)
|
||||
- Switch on the detector via `start` on the TA4 terminal. After a few test steps, the detector goes into normal operation or outputs an error.
|
||||
- The collider has to run continuously and then gradually delivers experience points. For 10 points, the collider has to run for a few hours
|
||||
|
||||
[techage_ta4c|image]
|
||||
|
||||
|
91
manuals/manual_ta5_DE.md
Normal file
91
manuals/manual_ta5_DE.md
Normal file
@ -0,0 +1,91 @@
|
||||
# TA5: Zukunft
|
||||
|
||||
Maschinen zur Überwindung von Raum und Zeit, neue Energiequellen und andere Errungenschaften prägen dein Leben.
|
||||
|
||||
Für die Herstellung und Nutzung von TA5 Maschinen und Blöcken sind Erfahrungspunkte (experience points) notwendig. Diese können nur über den Teilchenbeschleuniger aus TA4 erarbeitet werden.
|
||||
|
||||
[techage_ta5|image]
|
||||
|
||||
## Energiequellen
|
||||
|
||||
### TA5 Fusionsreaktor (geplant)
|
||||
|
||||
## Energiespeicher
|
||||
|
||||
### TA5 Hybrid-Speicher (geplant)
|
||||
|
||||
## Logik Blöcke
|
||||
|
||||
## Transport und Verkehr
|
||||
|
||||
### TA5 Flug Controller
|
||||
|
||||
Der TA5 Flug Controller ist ähnlich zum TA4 Move Controller. Im Gegensatz zum TA4 Move Controller können hier mehrere Bewegungen zu einer Flugstrecke kombiniert werden. Diese Flugstrecke kann im Eingabefeld über mehrere x,y,z Angaben definiert werden (eine Bewegung pro Zeile). Über "Speichern" wird die Flugstrecke geprüft und gespeichert. Bei einem Fehler wird eine Fehlermeldung ausgegeben.
|
||||
|
||||
Mit der Taste "Test" wird die Flugstrecke mit den absoluten Koordinaten zur Überprüfung im Chat ausgegeben.
|
||||
|
||||
Die maximale Distanz für die gesammte Flugstrecke beträgt 500 m.
|
||||
|
||||
Die Nutzung des TA5 Flug Controllers benötigt 40 Erfahrungspunkte.
|
||||
|
||||
[ta5_flycontroller|image]
|
||||
|
||||
### TA5 Hyperloop Transport Kiste
|
||||
|
||||
Die TA5 Hyperloop Transport Kiste erlaubt den Transport von Gegenständen über ein Hyperloop Netzwerk.
|
||||
|
||||
Eine normale TA4 Kiste muss man dazu auf eine Hyperloop Junction stellen. Die Kiste bekommt damit ein zusätzliches Schraubenschlüssel-Menü mit dem man das Pairing von zwei Kisten durchführen kann. Dinge, die in der Kiste sind, werden zur Gegenstelle teleportiert. Die Kiste kann auch mit einem Schieber gefüllt/geleert werden.
|
||||
|
||||
Die Nutzung der TA5 Hyperloop Transport Kiste benötigt 20 Erfahrungspunkte.
|
||||
|
||||
[ta4_chest|image]
|
||||
|
||||
### TA5 Hyperloop Transport Tank
|
||||
|
||||
Der TA5 Hyperloop Transport Tank erlaubt den Transport von Flüssigkeiten über ein Hyperloop Netzwerk.
|
||||
|
||||
Ein TA4 Tank muss man dazu auf eine Hyperloop Junction stellen. Der Tank bekommt damit ein zusätzliches Schraubenschlüssel-Menü mit dem man das Pairing von zwei Tanks durchführen kann. Flüssigkeiten, die in dem Tank sind, werden zur Gegenstelle teleportiert. Der Tank kann auch mit einer Pumpe gefüllt/geleert werden.
|
||||
|
||||
Die Nutzung des TA5 Hyperloop Transport Tanks benötigt 20 Erfahrungspunkte.
|
||||
|
||||
[ta4_tank|image]
|
||||
|
||||
### Hyperloop Teleport Blöcke (geplant)
|
||||
|
||||
Die Hyperloop Teleport Blöcke erlauben den Aufbau von Hyperloop Netzwerk ohne Hyperloop-Röhren.
|
||||
|
||||
Die Nutzung der Hyperloop Teleport Blöcke benötigt 120 Erfahrungspunkte.
|
||||
|
||||
### TA5 Container (geplant)
|
||||
|
||||
Der TA5 Container erlaubt Techage Anlagen ein- und an einer anderen Stelle wieder auszupacken.
|
||||
|
||||
Für die Nutzung des TA5 Containers werden 80 Erfahrungspunkte benötigt.
|
||||
|
||||
### TA5-Teleport-Tubes (geplant)
|
||||
|
||||
Teleport Tubes erlauben den Item-Transport ohne Tubes bis zu einer Entfernung von 200 Blöcken.
|
||||
|
||||
Die Teleport-Tubes benötigen jeweils 5 ku Strom.
|
||||
|
||||
Für die Nutzung der TA5 Teleport Tubes werden 60 Erfahrungspunkte benötigt.
|
||||
|
||||
### TA5-Teleport-Pipes (geplant)
|
||||
|
||||
Teleport Pipes erlauben den Flüssigkeiten-Transport ohne Pipes bis zu einer Entfernung von 200 Blöcken.
|
||||
|
||||
Die Teleport-Pipes benötigen jeweils 5 ku Strom.
|
||||
|
||||
Für die Nutzung der TA5 Teleport Pipes werden 60 Erfahrungspunkte benötigt.
|
||||
|
||||
### TA5-Raumgleiter (geplant)
|
||||
|
||||
Dank einem Spezialantrieb für Lichtgeschwindigkeit können mit dem Raumgleiter auch große Entfernungen sehr schnell überwunden werden.
|
||||
|
||||
## Weitere TA5 Blöcke/Items
|
||||
|
||||
### TA5 KI Chip / TA5 AI Chip
|
||||
|
||||
Der TA5 KI Chip wird teilweise zur Herstellung von TA5 Blöcken benötigt. Der TA5 KI Chip kann nur auf der TA4 Elektronik Fab hergestellt werden. Dazu werden 10 Erfahrungspunkte benötigt.
|
||||
|
||||
[ta5_aichip|image]
|
87
manuals/manual_ta5_EN.md
Normal file
87
manuals/manual_ta5_EN.md
Normal file
@ -0,0 +1,87 @@
|
||||
# TA5: Future
|
||||
|
||||
Machines to overcome space and time, new sources of energy and other achievements shape your life.
|
||||
|
||||
Experience points are required for the manufacture and use of TA5 machines and blocks. These can only be worked out using the collider from TA4.
|
||||
|
||||
[techage_ta5|image]
|
||||
|
||||
## Energy Sources
|
||||
|
||||
### TA5 Fusion Reactor (planned)
|
||||
|
||||
## Energy Storage
|
||||
|
||||
### TA5 Hybrid Storage (planned)
|
||||
|
||||
## Logic blocks
|
||||
|
||||
## Transport and Traffic
|
||||
|
||||
### TA5 Flight Controller
|
||||
|
||||
The TA5 Flight Controller is similar to the TA4 Move Controller. In contrast to the TA4 Move Controller, several movements can be combined into one flight route. This flight route can be defined in the input field using several x,y,z entries (one movement per line). The flight route is checked and saved via "Save". In the event of an error, an error message is issued.
|
||||
|
||||
With the "Test" button, the flight route with the absolute coordinates is output for checking in the chat.
|
||||
|
||||
The maximum distance for the entire flight distance is 500 m.
|
||||
|
||||
The use of the TA5 Flight Controller requires 40 experience points.
|
||||
|
||||
[ta5_flycontroller|image]
|
||||
|
||||
### TA5 Hyperloop Transport Chest
|
||||
|
||||
The TA5 Hyperloop Transport Chest allows objects to be transported over a Hyperloop network.
|
||||
|
||||
A normal TA4 chest has to be placed on a Hyperloop Junction. The chest has an additional wrench menu with which you can pair two chests. Things that are in the chest are teleported to the remote station. The box can also be filled/emptied with a pusher.
|
||||
|
||||
The use of the TA5 Hyperloop Transport Chest requires 20 experience points.
|
||||
|
||||
[ta4_chest|image]
|
||||
|
||||
### TA5 Hyperloop Transport Tank
|
||||
|
||||
The TA5 Hyperloop Transport Tank allows liquids to be transported over a Hyperloop network.
|
||||
|
||||
A TA4 Tank has to be placed on a Hyperloop Junction. This gives the tank an additional wrench menu that can be used to pair two tanks. Liquids in the tank will be teleported to the remote station. The tank can also be filled/emptied with a pump.
|
||||
|
||||
The use of the TA5 Hyperloop Transport Tank requires 20 experience points.
|
||||
|
||||
[ta4_tank|image]
|
||||
|
||||
### Hyperloop Teleport Blocks (planned)
|
||||
|
||||
The Hyperloop Teleport Blocks allow the construction of a Hyperloop network without Hyperloop tubes.
|
||||
|
||||
The use of the Hyperloop Teleport Blocks requires 120 experience points.
|
||||
|
||||
### TA5 Container (planned)
|
||||
|
||||
The TA5 container allows Techage systems to be packed and unpacked at another location.
|
||||
|
||||
80 experience points are required to use the TA5 container.
|
||||
|
||||
### TA5 Teleport Tubes (planned)
|
||||
|
||||
Teleport tubes allow items to be transported without tubes up to a distance of 200 blocks.
|
||||
|
||||
The teleport tubes each require 5 ku of electricity.
|
||||
|
||||
60 experience points are required to use the TA5 Teleport Tubes.
|
||||
|
||||
### TA5 Teleport Pipes (planned)
|
||||
|
||||
Teleport Pipes allow liquids to be transported without pipes up to a distance of 200 blocks.
|
||||
|
||||
The teleport pipes each require 5 ku of electricity.
|
||||
|
||||
60 experience points are required to use the TA5 Teleport Pipes.
|
||||
|
||||
## More TA5 Blocks / Items
|
||||
|
||||
### TA5 AI Chip
|
||||
|
||||
The TA5 AI Chip is partly required for the production of TA5 blocks. The TA5 AI Chip can only be manufactured at the TA4 Electronics Fab. This requires 10 experience points.
|
||||
|
||||
[ta5_aichip|image]
|
@ -138,7 +138,7 @@
|
||||
- [TechAge Programmer](./manual_ta3_DE.md#techage-programmer)
|
||||
- [TechAge Kelle / Trowel](./manual_ta3_DE.md#techage-kelle--trowel)
|
||||
- [TA3 Bohrgestängezange / TA3 Drill Pipe Wrench](./manual_ta3_DE.md#ta3-bohrgestängezange--ta3-drill-pipe-wrench)
|
||||
- [TA4: Jetzt-Zeitalter](./manual_ta4_DE.md#ta4:-jetzt-zeitalter)
|
||||
- [TA4: Gegenwart](./manual_ta4_DE.md#ta4:-gegenwart)
|
||||
- [Windkraftanlage](./manual_ta4_DE.md#windkraftanlage)
|
||||
- [TA4 Windkraftanlage / Wind Turbine](./manual_ta4_DE.md#ta4-windkraftanlage--wind-turbine)
|
||||
- [TA4 Windkraftanlagengondel / Wind Turbine Nacelle](./manual_ta4_DE.md#ta4-windkraftanlagengondel--wind-turbine-nacelle)
|
||||
|
@ -138,7 +138,7 @@
|
||||
- [TechAge Programmer](./manual_ta3_EN.md#techage-programmer)
|
||||
- [TechAge Trowel / Trowel](./manual_ta3_EN.md#techage-trowel--trowel)
|
||||
- [TA3 drill pipe wrench](./manual_ta3_EN.md#ta3-drill-pipe-wrench)
|
||||
- [TA4: Now Age](./manual_ta4_EN.md#ta4:-now-age)
|
||||
- [TA4: Present](./manual_ta4_EN.md#ta4:-present)
|
||||
- [Wind Turbine](./manual_ta4_EN.md#wind-turbine)
|
||||
- [TA4 Wind Turbine](./manual_ta4_EN.md#ta4-wind-turbine)
|
||||
- [TA4 Wind Turbine Nacelle](./manual_ta4_EN.md#ta4-wind-turbine-nacelle)
|
||||
|
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