modelkc_evenGapLaminar

Verification of function kc_evenGapLaminar

Extends from Modelica.Icons.Example (Icon for runnable examples).

Parameters

TypeNameDefaultDescription
Integernsize(cp, 1)
SI.Diameterd_hyd2*s
SI.SpecificHeatCapacityAtConstantPressure[:]cp{1007, 4189, 3384.550}Specific heat capacity at constant pressure of fluid
SI.DynamicViscosity[:]eta{18.24e-6, 1001.6e-6, 0.114}Dynamic viscosity of fluid
SI.ThermalConductivity[:]lambda{25.69e-3, 598.5e-3, 0.387}Thermal conductivity of fluid
SI.Density[:]rho{1.188, 998.21, 1037.799}Density of fluid
Geometry
SI.Lengthh0.1Height of cross sectional area
SI.Lengths0.05Distance between parallel plates in cross sectional area
SI.LengthL1Overflowed length of gap

Components

TypeNameDefaultDescription
Real[n]abscissa{(length/d_hyd/(max(Re[i], 1e-3)*Pr[i]))^0.5 for i in 1:n}
SI.LengthlengthL
SI.Lengthdimlesslength
SI.PrandtlNumber[n]Pr{eta[i]*cp[i]/(lambda[i]) for i in 1:n}
SI.ReynoldsNumber[n]Re{rho[i]*velocity[i]*d_hyd/eta[i] for i in 1:n}
SI.Velocity[n]velocity{m_flow[i]/(rho[i]*h*s) for i in 1:n}
Modelica.Fluid.Dissipation.HeatTransfer.Channel.kc_evenGapLaminar_IN_con[n]m_flow_IN_con_1
Modelica.Fluid.Dissipation.HeatTransfer.Channel.kc_evenGapLaminar_IN_var[n]m_flow_IN_var_1
Modelica.Fluid.Dissipation.HeatTransfer.Channel.kc_evenGapLaminar_IN_con[n]m_flow_IN_con_2
Modelica.Fluid.Dissipation.HeatTransfer.Channel.kc_evenGapLaminar_IN_var[n]m_flow_IN_var_2
Modelica.Fluid.Dissipation.HeatTransfer.Channel.kc_evenGapLaminar_IN_con[n]m_flow_IN_con_3
Modelica.Fluid.Dissipation.HeatTransfer.Channel.kc_evenGapLaminar_IN_var[n]m_flow_IN_var_3
Modelica.Fluid.Dissipation.HeatTransfer.Channel.kc_evenGapLaminar_IN_con[n]m_flow_IN_con_4
Modelica.Fluid.Dissipation.HeatTransfer.Channel.kc_evenGapLaminar_IN_var[n]m_flow_IN_var_4
SI.NusseltNumber[n]Nu_1Nusselt number
SI.NusseltNumber[n]Nu_2Nusselt number
SI.NusseltNumber[n]Nu_3Nusselt number
SI.NusseltNumber[n]Nu_4Nusselt number