modelHEXvle2vle_L3_1ph_BU_ntu

VLE 2 VLE | L3 | 1 phase on each side | Block shape | U-type | NTU Ansatz
Diagram of HEXvle2vle_L3_1ph_BU_ntu

Extends from ClaRa.Basics.Icons.HEX01, ClaRa.Basics.Icons.ComplexityLevel (Displays the complexity level inside model icon ).

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
BooleanshowExpertSummarysimCenter.showExpertSummary|Summary and Visualisation||True, if expert summary should be applied
BooleanshowDatatrue|Summary and Visualisation||True, if a data port containing p,T,h,s,m_flow shall be shown, else false
Fundamental Definitions
BooleanuseHomotopysimCenter.useHomotopyTrue, if homotopy method is used during initialisation
Shell Side › Fundamental Definitions
TILMedia.VLEFluid.Types.BaseVLEFluidmedium_shellsimCenter.fluid1Medium to be used for flow 1
Shell Side › Geometry
Basics.Units.Lengthlength2Length of the HEX
Basics.Units.Lengthheight7Height of HEX
Basics.Units.Lengthwidth2Width of HEX
Basics.Units.Lengthz_in_shellheightInlet position from bottom
Basics.Units.Lengthz_out_shell0.1Outlet position from bottom
Basics.Choices.GeometryOrientationflowOrientationClaRa.Basics.Choices.GeometryOrientation.verticalFlow orientation at shell side
IntegertubeOrientation0Tube orientation
Shell Side › Nominal Values
Basics.Units.MassFlowRatem_nom_shell40Nominal mass flow on shell side
Basics.Units.Pressurep_nom_shell35e5Nominal pressure on shell side
Basics.Units.EnthalpyMassSpecifich_nom_shell3500e3Nominal specific enthalpy on shell side
Shell Side › Initialisation
Basics.Units.EnthalpyMassSpecifich_start_shell100e3Start value of sytsem specific enthalpy
Basics.Units.Pressurep_start_shell1e5Start value of sytsem pressure
IntegerinitOptionShell0Type of initialisation
Tubes › Fundamental Definitions
TILMedia.VLEFluid.Types.BaseVLEFluidmedium_tubessimCenter.fluid1Medium to be used for flow 2
Tubes › Tubes Geometry
Basics.Units.Lengthdiameter_i0.019Inner diameter of horizontal tubes
Basics.Units.Lengthdiameter_o0.027Outer diameter of horizontal tubes
IntegerN_tubes210Number of horizontal tubes
IntegerN_passesinteger(floor(230/(3.14159*diameter_o*width*N_tubes)))Number of passes of the internal tubes
Basics.Units.Lengthz_in_tubesheightInlet position from bottom
Basics.Units.Lengthz_out_tubes0.1Outlet position from bottom
BooleanstaggeredAlignmenttrueTrue, if the tubes are aligned staggeredly
Basics.Units.LengthDelta_z_par1.5*diameter_oDistance between tubes parallel to flow direction
Basics.Units.LengthDelta_z_ort1.5*diameter_oDistance between tubes orthogonal to flow direction
IntegerN_rowsinteger(ceil(sqrt(N_tubes))*N_passes)Number of pipe rows in shell flow direction
Tubes › Nominal Values
Basics.Units.MassFlowRatem_nom_tubes400Nominal mass flow on side 2
Basics.Units.Pressurep_nom_tubes400e5Nominal pressure on side 2
Basics.Units.EnthalpyMassSpecifich_nom_tubes10Nominal specific enthalpy on side 2
Basics.Units.HeatFlowRateQ_flow_nom1e6Nominal heat flow rate
Tubes › Initialisation
Basics.Units.EnthalpyMassSpecifich_start_tubes100e3Start value of sytsem specific enthalpy
Basics.Units.Pressurep_start_tubes1e5Start value of sytsem pressure
IntegerinitOptionTubes0Type of initialisation
Tube Wall › Fundamental Definitions
Basics.Units.Massmass_struc25000Mass of inner structure elements, additional to the tubes itself
Tube Wall › Initialisation
IntegerinitOptionWall0|Initialisation option for wall
Basics.Units.TemperatureT_w_i_start293.15Initial wall temperature at inner side
Basics.Units.TemperatureT_w_o_start293.15Initial wall temperature at shell side

Connectors

TypeNameDefaultDescription
ClaRa.Basics.Interfaces.FluidPortInIn2
ClaRa.Basics.Interfaces.FluidPortOutOut2
ClaRa.Basics.Interfaces.FluidPortOutOut1
ClaRa.Basics.Interfaces.FluidPortInIn1
Basics.Interfaces.EyeOuteye2
Basics.Interfaces.EyeOuteye1

Components

TypeNameDefaultDescription
Stringcomplexity (from ComplexityLevel)"??"
ClaRa.SimCentersimCenter
ClaRa.Basics.ControlVolumes.SolidVolumes.NTU_L2wall
Basics.ControlVolumes.FluidVolumes.VolumeVLE_L2tubes
Basics.ControlVolumes.FluidVolumes.VolumeVLE_L2shell
Summarysummary

Contents

NameDescription
Outline
Summary
HeatExchangerType
HeatTransfer_Shell
PressureLossShell
HeatTransferTubes
PressureLossTubes
WallMaterial

Revisions

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