Name | Description |
---|---|
Generic | Thermal properties of heat resistances |
Carpet | Carpet |
Type | Name | Default | Description |
---|---|---|---|
Length | x | 0 | Material thickness [m] |
ThermalConductivity | k | 0 | Thermal conductivity [W/(m.K)] |
SpecificHeatCapacity | c | 0 | Specific heat capacity [J/(kg.K)] |
Density | d | 0 | Mass density [kg/m3] |
Real | R | Thermal resistance of a unit area of material [m2.K/W] | |
Integer | nStaRef | 0 | Number of state variables in a reference material of 0.2 m concrete |
Boolean | steadyState | (c == 0 or d == 0) | Flag, if true, then material is computed using steady-state heat conduction |
Advanced | |||
Integer | nSta | max(1, integer(ceil(nStaReal... | Actual number of state variables in material |
Real | piRef | 331.4 | Ratio x/sqrt(alpha) for reference material of 0.2 m concrete |
Real | piMat | if steadyState then piRef el... | Ratio x/sqrt(alpha) |
Real | nStaReal | nStaRef*piMat/piRef | Number of states as a real number |
record Generic "Thermal properties of heat resistances" extends Buildings.HeatTransfer.Data.BaseClasses.Material( final c=0, final d=0, final k=0, final x=0, nStaRef=0);end Generic;
Type | Name | Default | Description |
---|---|---|---|
Real | R | 0.2165 | Thermal resistance of a unit area of material [m2.K/W] |
Integer | nStaRef | 0 | Number of state variables in a reference material of 0.2 m concrete |
Boolean | steadyState | (c == 0 or d == 0) | Flag, if true, then material is computed using steady-state heat conduction |
Advanced | |||
Integer | nSta | max(1, integer(ceil(nStaReal... | Actual number of state variables in material |
Real | piRef | 331.4 | Ratio x/sqrt(alpha) for reference material of 0.2 m concrete |
Real | piMat | if steadyState then piRef el... | Ratio x/sqrt(alpha) |
Real | nStaReal | nStaRef*piMat/piRef | Number of states as a real number |
record Carpet = Buildings.HeatTransfer.Data.Resistances.Generic ( R=0.2165) "Carpet";