modelBoundary_ph

Boundary with prescribed pressure, specific enthalpy, composition and trace substances

Extends from IBPSA.Fluid.Sources.BaseClasses.PartialSource_p (Partial source with prescribed pressure), IBPSA.Fluid.Sources.BaseClasses.PartialSource_h (Boundary with prescribed enthalpy), IBPSA.Fluid.Sources.BaseClasses.PartialSource_Xi_C (Partial component source with parameter definitions for Xi and C).

Information

Defines prescribed values for boundary conditions:

  • Prescribed boundary pressure.
  • Prescribed boundary specific enthalpy.
  • Boundary composition (only for multi-substance or trace-substance flow).

Typical use and important parameters

If use_p_in is false (default option), the p parameter is used as boundary pressure, and the p_in input connector is disabled; if use_p_in is true, then the p parameter is ignored, and the value provided by the input connector is used instead.

The same applies to the specific enthalpy h, composition Xi or X and trace substances C.

Options

Instead of using Xi_in (the independent composition fractions), the advanced tab provides an option for setting all composition fractions using X_in. use_X_in and use_Xi_in cannot be used at the same time.

Parameter verifyInputs can be set to true to enable a check that verifies the validity of the used specific enthalpy and pressures. This removes the corresponding overhead from the model, which is a substantial part of the overhead of this model. See #882 for more information.

Note, that boundary specific enthalpy, mass fractions and trace substances have only an effect if the mass flow is from the boundary into the port. If mass is flowing from the port into the boundary, the boundary definitions, with exception of boundary pressure, do not have an effect.

Parameters

TypeNameDefaultDescription
IntegernPorts (from PartialSource)0Number of ports
Advanced
BooleanverifyInputs (from PartialSource)falseSet to true to stop the simulation with an error if the medium temperature is outside its allowable range
Booleanuse_X_in (from PartialSource_Xi_C)falseGet the composition (all fractions) from the input connector
Conditional inputs
Booleanuse_p_in (from PartialSource_p)falseGet the pressure from the input connector
Booleanuse_h_in (from PartialSource_h)falseGet the specific enthalpy from the input connector
Booleanuse_Xi_in (from PartialSource_Xi_C)falseGet the composition (independent fractions) from the input connector
Booleanuse_C_in (from PartialSource_Xi_C)falseGet the trace substances from the input connector
Fixed inputs
Medium.AbsolutePressurep (from PartialSource_p)Medium.p_defaultFixed value of pressure
Medium.SpecificEnthalpyh (from PartialSource_h)Medium.h_defaultFixed value of specific enthalpy
Medium.MassFraction[Medium.nX]X (from PartialSource_Xi_C)Medium.X_defaultFixed value of composition
Medium.ExtraProperty[Medium.nC]C (from PartialSource_Xi_C)fill(0, Medium.nC)Fixed values of trace substances

Connectors

TypeNameDefaultDescription
Modelica.Fluid.Interfaces.FluidPorts_b[nPorts]ports (from PartialSource)
Modelica.Blocks.Interfaces.RealInputp_in (from PartialSource_p)Prescribed boundary pressure
Modelica.Blocks.Interfaces.RealInputh_in (from PartialSource_h)Prescribed boundary specific enthalpy
Modelica.Blocks.Interfaces.RealInput[Medium.nX]X_in (from PartialSource_Xi_C)Prescribed boundary composition
Modelica.Blocks.Interfaces.RealInput[Medium.nXi]Xi_in (from PartialSource_Xi_C)Prescribed boundary composition
Modelica.Blocks.Interfaces.RealInput[Medium.nC]C_in (from PartialSource_Xi_C)Prescribed boundary trace substances

Revisions

  • February 2nd, 2018 by Filip Jorissen
    Made medium conditional and refactored inputs. See #882.
  • April 18, 2017, by Filip Jorissen:
    Changed checkBoundary implementation such that it is run as an initial equation when it depends on parameters only. See #728.
  • January 26, 2016, by Michael Wetter:
    Added unit and quantity attributes.
  • May 29, 2014, by Michael Wetter:
    Removed undesirable annotation Evaluate=true.
  • September 29, 2009, by Michael Wetter:
    First implementation. Implementation is based on Modelica.Fluid.