final case class GovGAST2(TurbineGovernorDynamics: TurbineGovernorDynamics = null, a: Double = 0.0, af1: Double = 0.0, af2: Double = 0.0, b: Double = 0.0, bf1: Double = 0.0, bf2: Double = 0.0, c: Double = 0.0, cf2: Double = 0.0, ecr: Double = 0.0, etd: Double = 0.0, k3: Double = 0.0, k4: Double = 0.0, k5: Double = 0.0, k6: Double = 0.0, kf: Double = 0.0, mwbase: Double = 0.0, t: Double = 0.0, t3: Double = 0.0, t4: Double = 0.0, t5: Double = 0.0, tc: Double = 0.0, tcd: Double = 0.0, tf: Double = 0.0, tmax: Double = 0.0, tmin: Double = 0.0, tr: Double = 0.0, trate: Double = 0.0, tt: Double = 0.0, w: Double = 0.0, x: Double = 0.0, y: Double = 0.0, z: Int = 0) extends Element with Product with Serializable
Gas turbine.
- TurbineGovernorDynamics
TurbineGovernorDynamics Reference to the superclass object.
- a
Valve positioner (A).
- af1
Exhaust temperature parameter (Af1). Unit = PU temperature. Based on temperature in degrees C.
- af2
Coefficient equal to 0,5(1-speed) (Af2).
- b
Valve positioner (B).
- bf1
(Bf1). Bf1 = E(1 - W) where E (speed sensitivity coefficient) is 0,55 to 0,65 x Tr. Unit = PU temperature. Based on temperature in degrees C.
- bf2
Turbine torque coefficient Khhv (depends on heating value of fuel stream in combustion chamber) (Bf2).
- c
Valve positioner (C).
- cf2
Coefficient defining fuel flow where power output is 0% (Cf2). Synchronous but no output. Typically 0,23 x Khhv (23% fuel flow).
- ecr
Combustion reaction time delay (Ecr) (>= 0).
- etd
Turbine and exhaust delay (Etd) (>= 0).
- k3
Ratio of fuel adjustment (K3).
- k4
Gain of radiation shield (K4).
- k5
Gain of radiation shield (K5).
- k6
Minimum fuel flow (K6).
- kf
Fuel system feedback (Kf).
- mwbase
Base for power values (MWbase) (> 0). Unit = MW.
- t
Fuel control time constant (T) (>= 0).
- t3
Radiation shield time constant (T3) (>= 0).
- t4
Thermocouple time constant (T4) (>= 0).
- t5
Temperature control time constant (T5) (>= 0).
- tc
Temperature control (Tc). Unit = °F or °C depending on parameters Af1 and Bf1.
- tcd
Compressor discharge time constant (Tcd) (>= 0).
- tf
Fuel system time constant (Tf) (>= 0).
- tmax
Maximum turbine limit (Tmax) (> GovGAST2.tmin).
- tmin
Minimum turbine limit (Tmin) (< GovGAST2.tmax).
- tr
Rated temperature (Tr). Unit = °C depending on parameters Af1 and Bf1.
- trate
Turbine rating (Trate). Unit = MW.
- tt
Temperature controller integration rate (Tt) (>= 0).
- w
Governor gain (1/droop) on turbine rating (W).
- x
Governor lead time constant (X) (>= 0).
- y
Governor lag time constant (Y) (> 0).
- z
Governor mode (Z). 1 = droop 0 = isochronous.
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GovGAST2(TurbineGovernorDynamics: TurbineGovernorDynamics = null, a: Double = 0.0, af1: Double = 0.0, af2: Double = 0.0, b: Double = 0.0, bf1: Double = 0.0, bf2: Double = 0.0, c: Double = 0.0, cf2: Double = 0.0, ecr: Double = 0.0, etd: Double = 0.0, k3: Double = 0.0, k4: Double = 0.0, k5: Double = 0.0, k6: Double = 0.0, kf: Double = 0.0, mwbase: Double = 0.0, t: Double = 0.0, t3: Double = 0.0, t4: Double = 0.0, t5: Double = 0.0, tc: Double = 0.0, tcd: Double = 0.0, tf: Double = 0.0, tmax: Double = 0.0, tmin: Double = 0.0, tr: Double = 0.0, trate: Double = 0.0, tt: Double = 0.0, w: Double = 0.0, x: Double = 0.0, y: Double = 0.0, z: Int = 0)
- TurbineGovernorDynamics
TurbineGovernorDynamics Reference to the superclass object.
- a
Valve positioner (A).
- af1
Exhaust temperature parameter (Af1). Unit = PU temperature. Based on temperature in degrees C.
- af2
Coefficient equal to 0,5(1-speed) (Af2).
- b
Valve positioner (B).
- bf1
(Bf1). Bf1 = E(1 - W) where E (speed sensitivity coefficient) is 0,55 to 0,65 x Tr. Unit = PU temperature. Based on temperature in degrees C.
- bf2
Turbine torque coefficient Khhv (depends on heating value of fuel stream in combustion chamber) (Bf2).
- c
Valve positioner (C).
- cf2
Coefficient defining fuel flow where power output is 0% (Cf2). Synchronous but no output. Typically 0,23 x Khhv (23% fuel flow).
- ecr
Combustion reaction time delay (Ecr) (>= 0).
- etd
Turbine and exhaust delay (Etd) (>= 0).
- k3
Ratio of fuel adjustment (K3).
- k4
Gain of radiation shield (K4).
- k5
Gain of radiation shield (K5).
- k6
Minimum fuel flow (K6).
- kf
Fuel system feedback (Kf).
- mwbase
Base for power values (MWbase) (> 0). Unit = MW.
- t
Fuel control time constant (T) (>= 0).
- t3
Radiation shield time constant (T3) (>= 0).
- t4
Thermocouple time constant (T4) (>= 0).
- t5
Temperature control time constant (T5) (>= 0).
- tc
Temperature control (Tc). Unit = °F or °C depending on parameters Af1 and Bf1.
- tcd
Compressor discharge time constant (Tcd) (>= 0).
- tf
Fuel system time constant (Tf) (>= 0).
- tmax
Maximum turbine limit (Tmax) (> GovGAST2.tmin).
- tmin
Minimum turbine limit (Tmin) (< GovGAST2.tmax).
- tr
Rated temperature (Tr). Unit = °C depending on parameters Af1 and Bf1.
- trate
Turbine rating (Trate). Unit = MW.
- tt
Temperature controller integration rate (Tt) (>= 0).
- w
Governor gain (1/droop) on turbine rating (W).
- x
Governor lead time constant (X) (>= 0).
- y
Governor lag time constant (Y) (> 0).
- z
Governor mode (Z). 1 = droop 0 = isochronous.
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def
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- val TurbineGovernorDynamics: TurbineGovernorDynamics
- val a: Double
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def
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Flag for rdf:about elements.
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- val af1: Double
- val af2: Double
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- val b: Double
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baseclass: String
This class name.
- val bf1: Double
- val bf2: Double
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Valid fields bitmap.
Valid fields bitmap.
One (1) in a bit position means that field was found in parsing, zero means it has an indeterminate value. Field order is specified by the fields array.
For classes constructed manually, we initially fill this in with the worst case scenario. ToDo: this won't work for classes with more than 128 fields (so far none).
- Definition Classes
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- val c: Double
- val cf2: Double
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def
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Return a copy of this object as a Row.
Return a copy of this object as a Row.
Creates a clone of this object for use in Row manipulations.
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- Definition Classes
- GovGAST2 → Row
- val ecr: Double
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Emit one XML attribute.
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Get the value of the field at index
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- val k3: Double
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The number of fields in the object definition.
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- val mwbase: Double
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def
sup: TurbineGovernorDynamics
Return the superclass object.
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- val t: Double
- val t3: Double
- val t4: Double
- val t5: Double
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- val tcd: Double
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- val tmax: Double
- val tmin: Double
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