TIPowerPlantTemplate EN

From Terra Invicta Official Wiki

TIPowerPlantTemplate.displayName.FuelCellI=Fuel Cell I TIPowerPlantTemplate.description.FuelCellI=Alkaline fuel cells consume hydrogen and oxygen to produce power and are recharged by a solar array. TIPowerPlantTemplate.displayName.FuelCellII=Fuel Cell II TIPowerPlantTemplate.description.FuelCellII=Alkaline fuel cells consume hydrogen and oxygen to produce power and are recharged by a solar array. TIPowerPlantTemplate.displayName.FuelCellIII=Fuel Cell III TIPowerPlantTemplate.description.FuelCellIII=Alkaline fuel cells consume hydrogen and oxygen to produce power and are recharged by a solar array. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorI=Solid Core Fission Reactor I TIPowerPlantTemplate.description.SolidCoreFissionReactorI=An adapted nuclear power plant that operates at around 2,500 degrees Celsius. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorII=Solid Core Fission Reactor II TIPowerPlantTemplate.description.SolidCoreFissionReactorII=An adapted nuclear power plant that operates at around 2,500 degrees Celsius. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorIII=Solid Core Fission Reactor III TIPowerPlantTemplate.description.SolidCoreFissionReactorIII=An adapted nuclear power plant that operates at around 2,500 degrees Celsius. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorIV=Solid Core Fission Reactor IV TIPowerPlantTemplate.description.SolidCoreFissionReactorIV=An adapted nuclear power plant that operates at around 2,500 degrees Celsius. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorV=Solid Core Fission Reactor V TIPowerPlantTemplate.description.SolidCoreFissionReactorV=An adapted nuclear power plant that operates at around 2,500 degrees Celsius. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorVI=Compact Solid Core Fission Reactor I TIPowerPlantTemplate.description.SolidCoreFissionReactorVI=A miniaturized fission reactor offers space and mass-savings for our ships. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorVII=Compact Solid Core Fission Reactor II TIPowerPlantTemplate.description.SolidCoreFissionReactorVII=A miniaturized fission reactor offers space and mass-savings for our ships. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorVIII=Compact Solid Core Fission Reactor III TIPowerPlantTemplate.description.SolidCoreFissionReactorVIII=A miniaturized fission reactor offers space and mass-savings for our ships. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorIX=Compact Solid Core Fission Reactor IV TIPowerPlantTemplate.description.SolidCoreFissionReactorIX=A miniaturized fission reactor offers space and mass-savings for our ships. TIPowerPlantTemplate.displayName.SolidCoreFissionReactorX=Compact Solid Core Fission Reactor V TIPowerPlantTemplate.description.SolidCoreFissionReactorX=A miniaturized fission reactor offers space and mass-savings for our ships. TIPowerPlantTemplate.displayName.MoltenSaltFissionReactorI=Molten Salt Fission Reactor I TIPowerPlantTemplate.description.MoltenSaltFissionReactorI=Complex but efficient fission reactor that uses molten salts as coolant and supports solid- or liquid-core drives. TIPowerPlantTemplate.displayName.MoltenSaltFissionReactorII=Molten Salt Fission Reactor II TIPowerPlantTemplate.description.MoltenSaltFissionReactorII=Complex but efficient fission reactor that uses molten salts as coolant and supports solid- or liquid-core drives. TIPowerPlantTemplate.displayName.MoltenCoreFissionReactorI=Molten Core Fission Reactor I TIPowerPlantTemplate.description.MoltenCoreFissionReactorI=A spinning fission reaction chamber filled with liquid tantalum or rhenium allows operating temperatures of around 5,000 degrees Celsius. TIPowerPlantTemplate.displayName.MoltenCoreFissionReactorII=Molten Core Fission Reactor II TIPowerPlantTemplate.description.MoltenCoreFissionReactorII=A spinning fission reaction chamber filled with liquid tantalum or rhenium allows operating temperatures of around 5,000 degrees Celsius. TIPowerPlantTemplate.displayName.MoltenCoreFissionReactorIII=Molten Core Fission Reactor III TIPowerPlantTemplate.description.MoltenCoreFissionReactorIII=A spinning fission reaction chamber filled with liquid tantalum or rhenium allows operating temperatures of around 5,000 degrees Celsius. TIPowerPlantTemplate.displayName.VaporCoreFissionReactorI=Vapor Core Fission Reactor I TIPowerPlantTemplate.description.VaporCoreFissionReactorI=Uranium vapor undergoes fission to offer operating temperatures approaching 8,000 degrees Celsius, allowing us to power a new generation of drives. TIPowerPlantTemplate.displayName.VaporCoreFissionReactorII=Vapor Core Fission Reactor II TIPowerPlantTemplate.description.VaporCoreFissionReactorII=Uranium vapor undergoes fission to offer operating temperatures approaching 8,000 degrees Celsius, allowing us to power a new generation of drives. TIPowerPlantTemplate.displayName.VaporCoreFissionReactorIII=Vapor Core Fission Reactor III TIPowerPlantTemplate.description.VaporCoreFissionReactorIII=Uranium vapor undergoes fission to offer operating temperatures approaching 8,000 degrees Celsius, allowing us to power a new generation of drives. TIPowerPlantTemplate.displayName.GasCoreFissionReactorI=Gas Core Fission Reactor I TIPowerPlantTemplate.description.GasCoreFissionReactorI=A rotating vortex of gaseous fissiles can operate at temperatures up to 25,000 degrees Celsius. TIPowerPlantTemplate.displayName.GasCoreFissionReactorII=Gas Core Fission Reactor II TIPowerPlantTemplate.description.GasCoreFissionReactorII=A rotating vortex of gaseous fissiles can operate at temperatures up to 25,000 degrees Celsius. TIPowerPlantTemplate.displayName.GasCoreFissionReactorIII=Gas Core Fission Reactor III TIPowerPlantTemplate.description.GasCoreFissionReactorIII=A rotating vortex of gaseous fissiles can operate at temperatures up to 25,000 degrees Celsius. TIPowerPlantTemplate.displayName.GasCoreFissionReactorIV=Terawatt Gas Core Fission Reactor I TIPowerPlantTemplate.description.GasCoreFissionReactorIV=Stronger materials allow us to achieve massive power output from nuclear fission. TIPowerPlantTemplate.displayName.GasCoreFissionReactorV=Terawatt Gas Core Fission Reactor II TIPowerPlantTemplate.description.GasCoreFissionReactorV=Stronger materials allow us to achieve massive power output from nuclear fission. TIPowerPlantTemplate.displayName.GasCoreFissionReactorVI=Terawatt Gas Core Fission Reactor III TIPowerPlantTemplate.description.GasCoreFissionReactorVI=Stronger materials allow us to achieve massive power output from nuclear fission. TIPowerPlantTemplate.displayName.ElectrostaticConfinementFusionReactorI=Electrostatic Confinement Fusion Reactor I TIPowerPlantTemplate.description.ElectrostaticConfinementFusionReactorI=An electron beam fuses fusion fuel in this compact reactor. TIPowerPlantTemplate.displayName.ElectrostaticConfinementFusionReactorII=Electrostatic Confinement Fusion Reactor II TIPowerPlantTemplate.description.ElectrostaticConfinementFusionReactorII=An electron beam fuses fusion fuel in this compact reactor. TIPowerPlantTemplate.displayName.ElectrostaticConfinementFusionReactorIII=Electrostatic Confinement Fusion Reactor III TIPowerPlantTemplate.description.ElectrostaticConfinementFusionReactorIII=An electron beam fuses fusion fuel in this compact reactor. TIPowerPlantTemplate.displayName.ZPinchFusionReactorI=Z-Pinch Fusion Reactor I TIPowerPlantTemplate.description.ZPinchFusionReactorI=Nuclear fusion is maintained by a Zeta-pinch magnetic field that compresses reaction plasma. TIPowerPlantTemplate.displayName.ZPinchFusionReactorII=Z-Pinch Fusion Reactor II TIPowerPlantTemplate.description.ZPinchFusionReactorII=Nuclear fusion is maintained by a Zeta-pinch magnetic field that compresses reaction plasma. TIPowerPlantTemplate.displayName.ZPinchFusionReactorIII=Z-Pinch Fusion Reactor III TIPowerPlantTemplate.description.ZPinchFusionReactorIII=Nuclear fusion is maintained by a Zeta-pinch magnetic field that compresses reaction plasma. TIPowerPlantTemplate.displayName.ZPinchFusionReactorIV=Z-Pinch Fusion Reactor IV TIPowerPlantTemplate.description.ZPinchFusionReactorIV=Nuclear fusion is maintained by a Zeta-pinch magnetic field that compresses reaction plasma. TIPowerPlantTemplate.displayName.HybridConfinementFusionReactorI=Hybrid Confinement Fusion Reactor I TIPowerPlantTemplate.description.HybridConfinementFusionReactorI=Electrostatic and magnetic plasma confinement techniques are combined to create a high-energy fusion reactor. TIPowerPlantTemplate.displayName.HybridConfinementFusionReactorII=Hybrid Confinement Fusion Reactor II TIPowerPlantTemplate.description.HybridConfinementFusionReactorII=Electrostatic and magnetic plasma confinement techniques are combined to create a high-energy fusion reactor. TIPowerPlantTemplate.displayName.HybridConfinementFusionReactorIII=Hybrid Confinement Fusion Reactor III TIPowerPlantTemplate.description.HybridConfinementFusionReactorIII=Electrostatic, magnetic, and inertial plasma confinement techniques are combined to create a high-energy fusion reactor. TIPowerPlantTemplate.displayName.HybridConfinementFusionReactorIV=Hybrid Confinement Fusion Reactor IV TIPowerPlantTemplate.description.HybridConfinementFusionReactorIV=Electrostatic, magnetic, and inertial plasma confinement techniques are combined to create a high-energy fusion reactor. TIPowerPlantTemplate.displayName.FlowStabilizedZPinchFusionReactor=Flow-Stabilized Z-Pinch Fusion Reactor TIPowerPlantTemplate.description.FlowStabilizedZPinchFusionReactor=Z-Pinch fusion plasma is stabilized by sheared flow, allowing for terawatt-grade reactors. TIPowerPlantTemplate.displayName.FusionTokamakI=Fusion Tokamak I TIPowerPlantTemplate.description.FusionTokamakI=A toroidal magnetic field holds fusion plasma and gathers charged particles to generate power. TIPowerPlantTemplate.displayName.FusionTokamakII=Fusion Tokamak II TIPowerPlantTemplate.description.FusionTokamakII=A toroidal magnetic field holds fusion plasma and gathers charged particles to generate power. TIPowerPlantTemplate.displayName.FusionTokamakIII=Fusion Tokamak III TIPowerPlantTemplate.description.FusionTokamakIII=A toroidal magnetic field holds fusion plasma and gathers charged particles to generate power. TIPowerPlantTemplate.displayName.FusionTokamakIV=Fusion Tokamak IV TIPowerPlantTemplate.description.FusionTokamakIV=A toroidal magnetic field holds fusion plasma and gathers charged particles to generate power. TIPowerPlantTemplate.displayName.FusionTokamakV=Fusion Tokamak V TIPowerPlantTemplate.description.FusionTokamakV=A toroidal magnetic field holds fusion plasma and gathers charged particles to generate power. TIPowerPlantTemplate.displayName.MirrorCellFusionReactorI=Mirror Cell Fusion Reactor I TIPowerPlantTemplate.description.MirrorCellFusionReactorI=A linear fusion reactor that uses magnetic mirrors to contain and direct plasma. TIPowerPlantTemplate.displayName.MirrorCellFusionReactorII=Mirror Cell Fusion Reactor II TIPowerPlantTemplate.description.MirrorCellFusionReactorII=A linear fusion reactor that uses magnetic mirrors to contain and direct plasma. TIPowerPlantTemplate.displayName.MirrorCellFusionReactorIII=Mirror Cell Fusion Reactor III TIPowerPlantTemplate.description.MirrorCellFusionReactorIII=A linear fusion reactor that uses magnetic mirrors to contain and direct plasma. TIPowerPlantTemplate.displayName.InertialConfinementFusionReactorI=Inertial Confinement Fusion Reactor I TIPowerPlantTemplate.description.InertialConfinementFusionReactorI=Powerful lasers induce a sustained nuclear fusion reaction. TIPowerPlantTemplate.displayName.InertialConfinementFusionReactorII=Inertial Confinement Fusion Reactor II TIPowerPlantTemplate.description.InertialConfinementFusionReactorII=Powerful lasers induce a sustained nuclear fusion reaction. TIPowerPlantTemplate.displayName.InertialConfinementFusionReactorIII=Inertial Confinement Fusion Reactor III TIPowerPlantTemplate.description.InertialConfinementFusionReactorIII=Powerful lasers induce a sustained nuclear fusion reaction. TIPowerPlantTemplate.displayName.InertialConfinementFusionReactorIV=Inertial Confinement Fusion Reactor IV TIPowerPlantTemplate.description.InertialConfinementFusionReactorIV=Powerful lasers induce a sustained nuclear fusion reaction. TIPowerPlantTemplate.displayName.InertialConfinementFusionReactorV=Inertial Confinement Fusion Reactor V TIPowerPlantTemplate.description.InertialConfinementFusionReactorV=Powerful lasers induce a sustained nuclear fusion reaction. TIPowerPlantTemplate.displayName.InertialConfinementFusionReactorVI=Inertial Confinement Fusion Reactor VI TIPowerPlantTemplate.description.InertialConfinementFusionReactorVI=Powerful lasers induce a sustained nuclear fusion reaction. TIPowerPlantTemplate.displayName.InertialConfinementFusionReactorVII=Inertial Confinement Fusion Reactor VII TIPowerPlantTemplate.description.InertialConfinementFusionReactorVII=Powerful lasers induce a sustained nuclear fusion reaction. TIPowerPlantTemplate.displayName.AlienHybridConfinementFusionReactor=Alien Hybrid Confinement Fusion Reactor I TIPowerPlantTemplate.description.AlienHybridConfinementFusionReactor=The aliens appear to use a mix of electrostatic and inertial containment techniques for their powerful fusion reactors. TIPowerPlantTemplate.displayName.AlienAdvancedHybridConfinementFusionReactor=Alien Hybrid Confinement Fusion Reactor II TIPowerPlantTemplate.description.AlienAdvancedHybridConfinementFusionReactor=The aliens appear to use a mix of electrostatic and inertial containment techniques for their powerful fusion reactors. TIPowerPlantTemplate.displayName.AlienSuperAdvancedHybridConfinementFusionReactor=Alien Hybrid Confinement Fusion Reactor III TIPowerPlantTemplate.description.AlienSuperAdvancedHybridConfinementFusionReactor=The aliens appear to use a mix of electrostatic and inertial containment techniques for their powerful fusion reactors. TIPowerPlantTemplate.displayName.AntimatterSolidCoreReactor=Antimatter Solid Core Reactor TIPowerPlantTemplate.description.AntimatterSolidCoreReactor=A stream of antiprotons strike a tungsten target, heating it. TIPowerPlantTemplate.displayName.AntimatterGasCoreReactor=Antimatter Gas Core Reactor TIPowerPlantTemplate.description.AntimatterGasCoreReactor=Antimatter particles vaporize a heavy metal core, producing power. TIPowerPlantTemplate.displayName.AntimatterPlasmaCoreReactorI=Antimatter Plasma Core Reactor I TIPowerPlantTemplate.description.AntimatterPlasmaCoreReactorI=Antihydrogen annihilates inside a magnetic bottle, generating energy. TIPowerPlantTemplate.displayName.AntimatterPlasmaCoreReactorII=Antimatter Plasma Core Reactor II TIPowerPlantTemplate.description.AntimatterPlasmaCoreReactorII=Antihydrogen annihilates inside a magnetic bottle, generating energy. TIPowerPlantTemplate.displayName.AntimatterPlasmaCoreReactorIII=Antimatter Plasma Core Reactor III TIPowerPlantTemplate.description.AntimatterPlasmaCoreReactorIII=Antihydrogen annihilates inside a magnetic bottle, generating energy. TIPowerPlantTemplate.displayName.AntimatterBeamCoreReactor=Antimatter Beam Core Reactor TIPowerPlantTemplate.description.AntimatterBeamCoreReactor=A constant matter-antimatter reaction provides terawatts of power. TIPowerPlantTemplate.PowerPlantType=Classification:<rcol>{0}</rcol> TIPowerPlantTemplate.PowerPlantRequirement.Any_General=Any Reactor TIPowerPlantTemplate.PowerPlantRequirement.Fuel_Cell=Fuel Cell TIPowerPlantTemplate.PowerPlantRequirement.Solid_Core_Fission=Solid Core Fission TIPowerPlantTemplate.PowerPlantRequirement.Liquid_Core_Fission=Molten Core Fission TIPowerPlantTemplate.PowerPlantRequirement.Gas_Core_Fission=Gas Core Fission TIPowerPlantTemplate.PowerPlantRequirement.Molten_Salt_Core_Fission=Molten Salt Core Fission TIPowerPlantTemplate.PowerPlantRequirement.Z_Pinch_Fusion=Z-Pinch Fusion TIPowerPlantTemplate.PowerPlantRequirement.Any_Magnetic_Confinement_Fusion=Any Magnetic Confinement Fusion TIPowerPlantTemplate.PowerPlantRequirement.Electrostatic_Confinement_Fusion=Electrostatic Confinement Fusion TIPowerPlantTemplate.PowerPlantRequirement.Hybrid_Confinement_Fusion=Hybrid Confinement Fusion TIPowerPlantTemplate.PowerPlantRequirement.Toroid_Magnetic_Confinement_Fusion=Toroid Magnetic Confinement Fusion TIPowerPlantTemplate.PowerPlantRequirement.Mirrored_Magnetic_Confinement_Fusion=Mirrored Magnetic Confinement Fusion TIPowerPlantTemplate.PowerPlantRequirement.Inertial_Confinement_Fusion=Inertial Confinement Fusion TIPowerPlantTemplate.PowerPlantRequirement.Antimatter_Solid_Core=Solid Core Antimatter TIPowerPlantTemplate.PowerPlantRequirement.Antimatter_Gas_Core=Gas Core Antimatter TIPowerPlantTemplate.PowerPlantRequirement.Antimatter_Plasma_Core=Plasma Core Antimatter TIPowerPlantTemplate.PowerPlantRequirement.Antimatter_Beam_Core=Beam Core Antimatter TIPowerPlantTemplate.OutputMW=Output:<rcol>{0} Megawatts</rcol> TIPowerPlantTemplate.OutputGW=Output:<rcol>{0} Gigawatts</rcol> TIPowerPlantTemplate.OutputTW=Output:<rcol>{0} Terawatts</rcol> TIPowerPlantTemplate.SpecificPower=Specific Power:<rcol>{0} tons per GW</rcol> TIPowerPlantTemplate.SpecificResources=Cost:<rcol>{0} per GW</rcol> TIPowerPlantTemplate.MaximumOutputMW=Max Output To Drive:<rcol>{0} Megawatts</rcol> TIPowerPlantTemplate.MaximumOutputGW=Max Output To Drive:<rcol>{0} Gigawatts</rcol> TIPowerPlantTemplate.MaximumOutputTW=Max Output To Drive:<rcol>{0} Terawatts</rcol> TIPowerPlantTemplate.Efficiency=Efficiency:<rcol>{0}</rcol> TIPowerPlantTemplate.WasteHeatMW=Waste Heat:<rcol>{0} Megawatts</rcol> TIPowerPlantTemplate.WasteHeatGW=Waste Heat:<rcol>{0} Gigawatts</rcol> TIPowerPlantTemplate.WasteHeatTW=Waste Heat:<rcol>{0} Terawatts</rcol>