final case class GovGAST1(TurbineGovernorDynamics: TurbineGovernorDynamics = null, a: Double = 0.0, b: Double = 0.0, db1: Double = 0.0, db2: Double = 0.0, eps: Double = 0.0, fidle: Double = 0.0, gv1: Double = 0.0, gv2: Double = 0.0, gv3: Double = 0.0, gv4: Double = 0.0, gv5: Double = 0.0, gv6: Double = 0.0, ka: Double = 0.0, kt: Double = 0.0, lmax: Double = 0.0, loadinc: Double = 0.0, ltrate: Double = 0.0, mwbase: Double = 0.0, pgv1: Double = 0.0, pgv2: Double = 0.0, pgv3: Double = 0.0, pgv4: Double = 0.0, pgv5: Double = 0.0, pgv6: Double = 0.0, r: Double = 0.0, rmax: Double = 0.0, t1: Double = 0.0, t2: Double = 0.0, t3: Double = 0.0, t4: Double = 0.0, t5: Double = 0.0, tltr: Double = 0.0, vmax: Double = 0.0, vmin: Double = 0.0) extends Element with Product with Serializable
Modified single shaft gas turbine.
- TurbineGovernorDynamics
TurbineGovernorDynamics Reference to the superclass object.
- a
Turbine power time constant numerator scale factor (a). Typical value = 0,8.
- b
Turbine power time constant denominator scale factor (b) (>0). Typical value = 1.
- db1
Intentional dead-band width (db1). Unit = Hz. Typical value = 0.
- db2
Unintentional dead-band (db2). Unit = MW. Typical value = 0.
- eps
Intentional db hysteresis (eps). Unit = Hz. Typical value = 0.
- fidle
Fuel flow at zero power output (Fidle). Typical value = 0,18.
- gv1
Nonlinear gain point 1, PU gv (Gv1). Typical value = 0.
- gv2
Nonlinear gain point 2,PU gv (Gv2). Typical value = 0.
- gv3
Nonlinear gain point 3, PU gv (Gv3). Typical value = 0.
- gv4
Nonlinear gain point 4, PU gv (Gv4). Typical value = 0.
- gv5
Nonlinear gain point 5, PU gv (Gv5). Typical value = 0.
- gv6
Nonlinear gain point 6, PU gv (Gv6). Typical value = 0.
- ka
Governor gain (Ka). Typical value = 0.
- kt
Temperature limiter gain (Kt). Typical value = 3.
- lmax
Ambient temperature load limit (Lmax). Lmax is the turbine power output corresponding to the limiting exhaust gas temperature. Typical value = 1.
- loadinc
Valve position change allowed at fast rate (Loadinc). Typical value = 0,05.
- ltrate
Maximum long term fuel valve opening rate (Ltrate). Typical value = 0,02.
- mwbase
Base for power values (MWbase) (> 0). Unit = MW.
- pgv1
Nonlinear gain point 1, PU power (Pgv1). Typical value = 0.
- pgv2
Nonlinear gain point 2, PU power (Pgv2). Typical value = 0.
- pgv3
Nonlinear gain point 3, PU power (Pgv3). Typical value = 0.
- pgv4
Nonlinear gain point 4, PU power (Pgv4). Typical value = 0.
- pgv5
Nonlinear gain point 5, PU power (Pgv5). Typical value = 0.
- pgv6
Nonlinear gain point 6, PU power (Pgv6). Typical value = 0.
- r
Permanent droop (R) (>0). Typical value = 0,04.
- rmax
Maximum fuel valve opening rate (Rmax). Unit = PU / s. Typical value = 1.
- t1
Governor mechanism time constant (T1) (>= 0). T1 represents the natural valve positioning time constant of the governor for small disturbances, as seen when rate limiting is not in effect. Typical value = 0,5.
- t2
Turbine power time constant (T2) (>= 0). T2 represents delay due to internal energy storage of the gas turbine engine. T2 can be used to give a rough approximation to the delay associated with acceleration of the compressor spool of a multi-shaft engine, or with the compressibility of gas in the plenum of the free power turbine of an aero-derivative unit, for example. Typical value = 0,5.
- t3
Turbine exhaust temperature time constant (T3) (>= 0). T3 represents delay in the exhaust temperature and load limiting system. Typical value = 3.
- t4
Governor lead time constant (T4) (>= 0). Typical value = 0.
- t5
Governor lag time constant (T5) (>= 0). If = 0, entire gain and lead-lag block is bypassed. Typical value = 0.
- tltr
Valve position averaging time constant (Tltr) (>= 0). Typical value = 10.
- vmax
Maximum turbine power, PU of MWbase (Vmax) (> GovGAST1.vmin). Typical value = 1.
- vmin
Minimum turbine power, PU of MWbase (Vmin) (< GovGAST1.vmax). Typical value = 0.
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GovGAST1(TurbineGovernorDynamics: TurbineGovernorDynamics = null, a: Double = 0.0, b: Double = 0.0, db1: Double = 0.0, db2: Double = 0.0, eps: Double = 0.0, fidle: Double = 0.0, gv1: Double = 0.0, gv2: Double = 0.0, gv3: Double = 0.0, gv4: Double = 0.0, gv5: Double = 0.0, gv6: Double = 0.0, ka: Double = 0.0, kt: Double = 0.0, lmax: Double = 0.0, loadinc: Double = 0.0, ltrate: Double = 0.0, mwbase: Double = 0.0, pgv1: Double = 0.0, pgv2: Double = 0.0, pgv3: Double = 0.0, pgv4: Double = 0.0, pgv5: Double = 0.0, pgv6: Double = 0.0, r: Double = 0.0, rmax: Double = 0.0, t1: Double = 0.0, t2: Double = 0.0, t3: Double = 0.0, t4: Double = 0.0, t5: Double = 0.0, tltr: Double = 0.0, vmax: Double = 0.0, vmin: Double = 0.0)
- TurbineGovernorDynamics
TurbineGovernorDynamics Reference to the superclass object.
- a
Turbine power time constant numerator scale factor (a). Typical value = 0,8.
- b
Turbine power time constant denominator scale factor (b) (>0). Typical value = 1.
- db1
Intentional dead-band width (db1). Unit = Hz. Typical value = 0.
- db2
Unintentional dead-band (db2). Unit = MW. Typical value = 0.
- eps
Intentional db hysteresis (eps). Unit = Hz. Typical value = 0.
- fidle
Fuel flow at zero power output (Fidle). Typical value = 0,18.
- gv1
Nonlinear gain point 1, PU gv (Gv1). Typical value = 0.
- gv2
Nonlinear gain point 2,PU gv (Gv2). Typical value = 0.
- gv3
Nonlinear gain point 3, PU gv (Gv3). Typical value = 0.
- gv4
Nonlinear gain point 4, PU gv (Gv4). Typical value = 0.
- gv5
Nonlinear gain point 5, PU gv (Gv5). Typical value = 0.
- gv6
Nonlinear gain point 6, PU gv (Gv6). Typical value = 0.
- ka
Governor gain (Ka). Typical value = 0.
- kt
Temperature limiter gain (Kt). Typical value = 3.
- lmax
Ambient temperature load limit (Lmax). Lmax is the turbine power output corresponding to the limiting exhaust gas temperature. Typical value = 1.
- loadinc
Valve position change allowed at fast rate (Loadinc). Typical value = 0,05.
- ltrate
Maximum long term fuel valve opening rate (Ltrate). Typical value = 0,02.
- mwbase
Base for power values (MWbase) (> 0). Unit = MW.
- pgv1
Nonlinear gain point 1, PU power (Pgv1). Typical value = 0.
- pgv2
Nonlinear gain point 2, PU power (Pgv2). Typical value = 0.
- pgv3
Nonlinear gain point 3, PU power (Pgv3). Typical value = 0.
- pgv4
Nonlinear gain point 4, PU power (Pgv4). Typical value = 0.
- pgv5
Nonlinear gain point 5, PU power (Pgv5). Typical value = 0.
- pgv6
Nonlinear gain point 6, PU power (Pgv6). Typical value = 0.
- r
Permanent droop (R) (>0). Typical value = 0,04.
- rmax
Maximum fuel valve opening rate (Rmax). Unit = PU / s. Typical value = 1.
- t1
Governor mechanism time constant (T1) (>= 0). T1 represents the natural valve positioning time constant of the governor for small disturbances, as seen when rate limiting is not in effect. Typical value = 0,5.
- t2
Turbine power time constant (T2) (>= 0). T2 represents delay due to internal energy storage of the gas turbine engine. T2 can be used to give a rough approximation to the delay associated with acceleration of the compressor spool of a multi-shaft engine, or with the compressibility of gas in the plenum of the free power turbine of an aero-derivative unit, for example. Typical value = 0,5.
- t3
Turbine exhaust temperature time constant (T3) (>= 0). T3 represents delay in the exhaust temperature and load limiting system. Typical value = 3.
- t4
Governor lead time constant (T4) (>= 0). Typical value = 0.
- t5
Governor lag time constant (T5) (>= 0). If = 0, entire gain and lead-lag block is bypassed. Typical value = 0.
- tltr
Valve position averaging time constant (Tltr) (>= 0). Typical value = 10.
- vmax
Maximum turbine power, PU of MWbase (Vmax) (> GovGAST1.vmin). Typical value = 1.
- vmin
Minimum turbine power, PU of MWbase (Vmin) (< GovGAST1.vmax). Typical value = 0.
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- val TurbineGovernorDynamics: TurbineGovernorDynamics
- val a: Double
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- val db1: Double
- val db2: Double
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- val fidle: Double
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