modelFlameRoom_woBundle

Fixed fluid outlet temperature | blue | blue || brown | brown
Diagram of FlameRoom_woBundle

Information

For detailed model documentation please consult the html-documentation shipped with ClaRa.

 


Authorship and Copyright Statement for original (initial) Contribution

Author:

DYNCAP/DYNSTART development team, Copyright © 2011-2024.

References:

For references please consult the html-documentation shipped with ClaRa.

Remarks:

This component was developed by ClaRa development team under the 3-clause BSD License.

Acknowledgements:

ClaRa originated from the collaborative research projects DYNCAP and DYNSTART. Both research projects were supported by the German Federal Ministry for Economic Affairs and Energy (FKZ 03ET2009 and FKZ 03ET7060).

CLA:

The author(s) have agreed to ClaRa CLA, version 1.0. See https://claralib.com/pdf/CLA.pdf

By agreeing to ClaRa CLA, version 1.0 the author has granted the ClaRa development team a permanent right to use and modify his initial contribution as well as to publish it or its modified versions under the 3-clause BSD License.

The ClaRa development team consists of the following partners:

TLK-Thermo GmbH (Braunschweig, Germany)

XRG Simulation GmbH (Hamburg, Germany).

Parameters

TypeNameDefaultDescription
IntegerN_cv_wallsize(Delta_x_wall, 1)Number of finite volumes in wall
ClaRa.Basics.Units.HeatFlowRateQ_flow_wallm_flow_vle_wall_in*(h_vle_wall_out - h_vle_wall_in)Actual heat flow rate to evaporator
ClaRa.Basics.Units.EnthalpyMassSpecifich_bub_wallTILMedia.VLEFluid.MixtureCompatible.Functions.bubbleSpecificEnthalpy_pxi(vleMedium, p_vle_wall_out)
ClaRa.Basics.Units.EnthalpyMassSpecifich_dew_wallTILMedia.VLEFluid.MixtureCompatible.Functions.dewSpecificEnthalpy_pxi(vleMedium, p_vle_wall_out)
ClaRa.Basics.Units.PressureDelta_p_vle_wallPressure losses vle medium
ClaRa.Basics.Units.MassFlowRatem_flow_fgMass flow rate flue gas
ClaRa.Basics.Units.TemperatureDifferenceDelta_T_U_wallClaRa.Basics.Functions.maxAbs(T_fg_in - T_vle_wall_out, T_fg_out - T_vle_wall_in, 0.1)Rprt: Upper temperatre difference
ClaRa.Basics.Units.TemperatureDifferenceDelta_T_L_wallClaRa.Basics.Functions.minAbs(T_fg_in - T_vle_wall_out, T_fg_out - T_vle_wall_in, 0.1)Rprt: Lower temperature difference
ClaRa.Basics.Units.TemperatureDifferenceDelta_T_mean_wallSM(0.1, eps, abs(Delta_T_L_wall))*SM(0.01, eps, Delta_T_U_wall*Delta_T_L_wall)*SZT((Delta_T_U_wall - Delta_T_L_wall)/log(abs(Delta_T_U_wall)/(abs(Delta_T_L_wall) + 1e-9)), Delta_T_L_wall, (abs(Delta_T_U_wall) - abs(Delta_T_L_wall)) - 0.01, 0.001)Rprt: Logarithmic temperature difference
RealkA_wallQ_flow_wall/(1e-5 + Delta_T_mean_wall)Rprt: Heat Flow Resistance
ClaRa.Basics.Units.Pressure[N_cv_wall]p_wallClaRa.Basics.Functions.pressureInterpolation(p_vle_wall_in, p_vle_wall_out, Delta_x_wall, frictionAtInlet_wall, frictionAtOutlet_wall)Rprt: Discretisised pressure at tube bundle
ClaRa.Basics.Units.MassFractionxizeros(vleMedium.nc - 1)VLE composition in component, pure fluids supported only!
ClaRa.Basics.Units.PressureDelta_p_geo_wallTILMedia.VLEFluid.MixtureCompatible.Functions.density_phxi(vleMedium, p_vle_wall_out, h_vle_wall_out, xi)*Modelica.Constants.g_n*(z_wall_out - z_wall_in)Geostatic pressure difference
ClaRa.Basics.Units.EnthalpyMassSpecifich_vle_wall_inVLE medium's inlet specific enthalpy
ClaRa.Basics.Units.TemperatureT_vle_wall_inTILMedia.VLEFluid.MixtureCompatible.Functions.temperature_phxi(vleMedium, p_vle_wall_in, h_vle_wall_in)Rprt: VLE medium's inlet temperature
ClaRa.Basics.Units.Pressurep_vle_wall_inp_vle_wall_out + Delta_p_vle_wall + Delta_p_geo_wall VLE medium's inlet pressure
ClaRa.Basics.Units.MassFlowRatem_flow_vle_wall_inVLE medium's inlet mass flow
ClaRa.Basics.Units.EnthalpyMassSpecifich_vle_wall_outOutlet specific enthalpy
ClaRa.Basics.Units.TemperatureT_vle_wall_outTILMedia.VLEFluid.MixtureCompatible.Functions.temperature_phxi(vleMedium, p_vle_wall_out, h_vle_wall_out)VLE medium's outlet temperature
ClaRa.Basics.Units.Pressurep_vle_wall_outVLE medium's outlet pressure
ClaRa.Basics.Units.MassFlowRatem_flow_vle_wall_outm_flow_vle_wall_inVLE medium's inlet mass flow
ClaRa.Basics.Units.EnthalpyMassSpecifich_fg_in(m_flow_fg*h_fg_out - m_flow_vle_wall_in*h_vle_wall_in + m_flow_vle_wall_in*h_vle_wall_out)/m_flow_fgFG medium's inlet specific enthalpy flue gas
ClaRa.Basics.Units.TemperatureT_fg_inTILMedia.Gas.Functions.temperature_phxi(flueGas, p_fg_in, h_fg_in, xi_fg_in)FG inlet temperature
ClaRa.Basics.Units.MassFraction[inletGas.flueGas.nc - 1]xi_fg_inFG medium's inlet composition
ClaRa.Basics.Units.Pressurep_fg_inp_fg_outFG medium's inlet pressure
ClaRa.Basics.Units.EnthalpyMassSpecifich_fg_outTILMedia.Gas.Functions.specificEnthalpy_pTxi(flueGas, p_fg_out, T_fg_out, xi_fg_out) FG medium's outlet specific enthalpy
ClaRa.Basics.Units.TemperatureT_fg_outFG medium's outlet temperature
ClaRa.Basics.Units.MassFraction[outletGas.flueGas.nc - 1]xi_fg_outxi_fg_inFG medium's outlet composition
ClaRa.Basics.Units.Pressurep_fg_outFG medium's outlet pressure
ClaRa.Basics.Units.TemperatureT_wall_wall((T_fg_out + T_fg_in)/2 + (T_vle_wall_in + T_vle_wall_out)/2)/2Wall temperature of wall tubes
Part Load Definition
RealP_target_Target power in p.u.
Real[:,:]CharLine_Delta_p_P_target_[0, 0; 0.1, 0.01; 0.3, 0.09; 0.5, 0.25; 0.7, 0.49; 1, 1]Characteristic line of pressure drop as function of P_target_
Real[:,2]CharLine_h_wall_P_target_[0, 1; 1, 1]Characteristic line of h_vle_wall_out as function of P_target_
Fundamental Definitions
TILMedia.VLEFluid.Types.BaseVLEFluidvleMediumsimCenter.fluid1vleMedium in the component
TILMedia.Gas.Types.BaseGasflueGassimCenter.flueGasModelFlue gas model used in component
ClaRa.Basics.Units.Lengthz_wall_in0.0Geodetic height at inlet
ClaRa.Basics.Units.Lengthz_wall_out0.0Geodetic height at outlet
Nominal Operation Point
ClaRa.Basics.Units.EnthalpyMassSpecifich_vle_wall_out_nomNominal vle wall outlet spec. enthalpy
ClaRa.Basics.Units.PressureDelta_p_vle_wall_nomHeated fluid pressure loss at nominal load inside casing walls
Discretisation (for reporting only)
ClaRa.Basics.Units.Length[:]Delta_x_wallClaRa.Basics.Functions.GenerateGrid({0}, 10, 3)Discretisation scheme - tube bundle side
BooleanfrictionAtInlet_wallfalseTrue if pressure loss between first cell and inlet shall be considered - tube bundle side
BooleanfrictionAtOutlet_wallfalseTrue if pressure loss between last cell and outlet shall be considered - tube bundle side

Connectors

TypeNameDefaultDescription
ClaRa.StaticCycles.Fundamentals.FlueGasSignal_brown_boutletGas
ClaRa.StaticCycles.Fundamentals.FlueGasSignal_brown_ainletGas
ClaRa.StaticCycles.Fundamentals.SteamSignal_blue_ainletWall
ClaRa.StaticCycles.Fundamentals.SteamSignal_blue_boutletWall

Components

TypeNameDefaultDescription
ClaRa.SimCentersimCenter
Summarysummary

Contents

NameDescription
Summary

Revisions

For revisions please consult the html-documentation shipped with ClaRa.