[TurbineFuel] #Required modules for the machine to function Required = ["Turbine:1"] #Modules that can connect to the machine Modules = ["EfficiencyUpgradeTier2:1", "Control:10", "PowerCapacitor:10", "FuelTank:10", "Turbine:50", "Sensor:10", "PowerOutput:6", "EfficiencyUpgradeTier1:1", "FluidInput:5"] #Internal fuel capacity (mB) - this is the base value, expandable by tanks #Range: > 1 InternalFuelCapacity = 1000 #Internal energy capacity (FE) - this is the base value, expandable by capacitors #Range: > 1 InternalEnergyCapacity = 100000 #Fuel Efficiency [TurbineFuel.FuelEfficiency] #Base value #Range: 0.0 ~ 100.0 Base = 1.100000023841858 #With tier 1 upgrade #Range: 0.0 ~ 100.0 Tier1 = 1.350000023841858 #With tier 2 upgrade #Range: 0.0 ~ 100.0 Tier2 = 1.850000023841858 [TurbineSteam] #Required modules for the machine to function Required = ["Turbine:1"] #Modules that can connect to the machine Modules = ["FluidInput:5", "Control:10", "PowerCapacitor:10", "Turbine:50", "Sensor:10", "PowerOutput:6"] #Maximum rotation speed #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 MaxRPM = 5000.0 #FE/mB #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 SteamEnergyDensity = 2.0 #Internal steam capacity (mB) #Range: > 1 InternalSteamCapacity = 16000 #Internal energy capacity (FE) - this is the base value, expandable by capacitors #Range: > 1 InternalEnergyCapacity = 100000 #Base RPM delta is capped to MaxRPM * InertiaFunctionMultiplier * e^(InertiaFunctionExponent * CurrentRPM / MaxRPM) [TurbineSteam.Inertia] #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 InertiaFunctionMultiplier = 0.025 #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 InertiaFunctionExponent = -2.0 #SpinUpMultiplier must be > BaseDragMultiplier + CoilDragMultiplier [TurbineSteam.Drag] #Affects how fast a turbine spins up to it's target RPM #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 SpinUpMultiplier = 1.0 #Base constant RPM loss #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 BaseDragMultiplier = 0.2 #RPM loss when generating power #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 CoilDragMultiplier = 0.75 [SyngasProducer] #Required modules for the machine to function Required = ["MixingChamber:1"] #Modules that can connect to the machine Modules = ["FluidInput:5", "FluidOutputSelect:6", "Control:10", "MixingChamber:25", "HeatingChamber:10", "ItemInput:5", "Sensor:10"] #Internal steam/water/syngas/carbon capacity #Range: > 1 InternalTankCapacity = 32000 #Heat level required for conversion to start #Range: 1.0 ~ 1.7976931348623157E308 WorkHeat = 150.0 #Maximum heat level #Range: 1.0 ~ 1.7976931348623157E308 MaxHeat = 200.0 #Carbon consumed to produce 1mB of syngas #Range: 0.01 ~ 1.7976931348623157E308 CarbonPerMBSyngas = 50.0 #Steam consumed to produce 1mB of syngas #Range: 0.01 ~ 1.7976931348623157E308 SteamPerMBSyngas = 10.0 #Water to steam conversion ratio #Range: 0.01 ~ 1.7976931348623157E308 WaterSteamRatio = 3.0 #Syngas mB per tick #Range: 0.01 ~ 1.7976931348623157E308 MixingChamberThroughput = 1.0 #Steam mB per tick #Range: 0.01 ~ 1.7976931348623157E308 HeatingChamberThroughput = 50.0 #Heat Units per tick #Range: 0.001 ~ 1.7976931348623157E308 HeatingChamberHeating = 0.1 #Heat Units per tick #Range: 0.001 ~ 1.7976931348623157E308 HeatingChamberLoss = 0.02 #Carbon consumed per Heat Unit produced #Range: 0.1 ~ 1.7976931348623157E308 CarbonPerHeat = 20.0 [HeatExchanger] #Required modules for the machine to function Required = ["HeatExchanger:1"] #Modules that can connect to the machine Modules = ["ItemOutput:6", "FluidInput:5", "Control:10", "FluidOutputSelect:6", "HeatExchanger:50", "ItemInput:5", "Sensor:10"] #Range: > -2147483648 InternalTankCapacity = 16000 #Should be > StartHeating + (max HeatTransfer), otherwise weirdness will ensue #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 MaxHeat = 1000.0 #Start heating above this temperature #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 StartHeating = 150.0 #Decay per tick #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 HeatDecay = 0.05 [Modules] [Modules.FuelTank] #Capacity (mB) #Range: > -2147483648 Capacity = 16000 [Modules.HeatExchanger] #Heat Units per tick #Range: -1.7976931348623157E308 ~ 1.7976931348623157E308 HeatTransfer = 16.0 #Turbine module configuration [Modules.Turbines] #Basic Turbine [Modules.Turbines.Tier1] #Maximum FE generated per tick #Range: > 1 MaxFEPerTick = 100 #Maximum FE generated per tick #Range: 0.0 ~ 100.0 Inertia = 1.0 #Enhanced Turbine [Modules.Turbines.Tier2] #Maximum FE generated per tick #Range: > 1 MaxFEPerTick = 150 #Maximum FE generated per tick #Range: 0.0 ~ 100.0 Inertia = 1.1 #Advanced Turbine [Modules.Turbines.Tier3] #Maximum FE generated per tick #Range: > 1 MaxFEPerTick = 250 #Maximum FE generated per tick #Range: 0.0 ~ 100.0 Inertia = 1.2 #Reinforced Turbine [Modules.Turbines.Tier4] #Maximum FE generated per tick #Range: > 1 MaxFEPerTick = 500 #Maximum FE generated per tick #Range: 0.0 ~ 100.0 Inertia = 1.25 #Composite Turbine [Modules.Turbines.Tier5] #Maximum FE generated per tick #Range: > 1 MaxFEPerTick = 1000 #Maximum FE generated per tick #Range: 0.0 ~ 100.0 Inertia = 1.4 #Capacitor module configuration [Modules.Capacitors] #Basic Capacitor [Modules.Capacitors.Tier1] #Capacity (FE) #Range: > 1 Capacity = 1000000 #Advanced Capacitor [Modules.Capacitors.Tier2] #Capacity (FE) #Range: > 1 Capacity = 5000000 #High Density Capacitor [Modules.Capacitors.Tier3] #Capacity (FE) #Range: > 1 Capacity = 25000000