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June 6, 2005, 01:28 |
Error detected by routine PEEKR
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When using homogeneous binary mixture based on a redlich kwong equation of state,the following error is appeared. Details of error:- ---------------- Error detected by routine PEEKR CDANAM = PABSMIN/VALUE CRESLT = NONE
****** PROBLEM REPORT ****** Subsystem: Input Subroutine name: ErrAction Severity level: Fatal Error Error message number: 001100279 Stopped in routine MEMERR How to solve this error. Thanks very much. The following is the fluids list: Fluids List = H2ORKvl COMPONENT: H2ORKl Option = Equilibrium Fraction END COMPONENT: H2ORKv Option = Equilibrium Constraint END MATERIAL: H2ORKl Material Description = Wet water (H2O), Liquid Material Group = Wet Redlich Kwong Option = Pure Substance Thermodynamic State = Liquid PROPERTIES: Option = General Material DYNAMIC VISCOSITY: Option = Rigid Non Interacting Sphere Model END EQUATION OF STATE: Acentric Factor = 0.344 Boiling Temperature = 373.15 [K] Critical Pressure = 220.64 [bar] Critical Temperature = 647.14 [K] Critical Volume = 55.95 [cm^3 mol^-1] Molar Mass = 18.015 [kg kmol^-1] Option = Redlich Kwong END SPECIFIC HEAT CAPACITY: Maximum Temperature = 1000 [K] Minimum Temperature = 100 [K] Option = Redlich Kwong Polynomial Zero Pressure a1 = 4.395 Zero Pressure a2 = -4.186e-3 [K^-1] Zero Pressure a3 = 1.405e-5 [K^-2] Zero Pressure a4 = -1.564e-8 [K^-3] Zero Pressure a5 = 0.632e-11 [K^-4] END THERMAL CONDUCTIVITY: Option = Modified Eucken Model END END END MATERIAL: H2ORKv Material Description = Wet water vapour (H2O), Vapour Material Group = Wet Redlich Kwong Option = Pure Substance Thermodynamic State = Gas PROPERTIES: Option = General Material DYNAMIC VISCOSITY: Option = Rigid Non Interacting Sphere Model END EQUATION OF STATE: Acentric Factor = 0.344 Boiling Temperature = 373.15 [K] Critical Pressure = 220.64 [bar] Critical Temperature = 647.14 [K] Critical Volume = 55.95 [cm^3 mol^-1] Molar Mass = 18.015 [kg kmol^-1] Option = Redlich Kwong END SPECIFIC HEAT CAPACITY: Maximum Temperature = 1000 [K] Minimum Temperature = 100 [K] Option = Redlich Kwong Polynomial Zero Pressure a1 = 4.395 Zero Pressure a2 = -4.186e-3 [K^-1] Zero Pressure a3 = 1.405e-5 [K^-2] Zero Pressure a4 = -1.564e-8 [K^-3] Zero Pressure a5 = 0.632e-11 [K^-4] END THERMAL CONDUCTIVITY: Option = Modified Eucken Model END END END MATERIAL: H2ORKvl Binary Material1 = H2ORKv Binary Material2 = H2ORKl Material Description = Wet Water Vapour (H2O) Material Group = Wet Redlich Kwong Option = Homogeneous Binary Mixture SATURATION PROPERTIES: Option = Redlich Kwong END END END |
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