158996710

158996710



Subdomain Settings - Convection and Conduction (cc)


UEMl


Equation

6lspcpaT/at + V-(-kVT) = Q - pCpu-VT T = temperatura


Subdomains


Groups


iŁbdomain selection


Group:


Select by group [71 Active in this domain


Physics init i Element


Thermal properties and heat sources/sinks


Library materiał: SiC (alpha) ▼


Load...


Value/Expression ts    i

o k(isotropic)    k(T[l/K])[W/(m*K)]


Quantity

5


k (anisotropic) jo.025 0 0 0 0.025 0 0 0 0.025


rho(T[l/K])[kg/m^3]


C(T[l/K])[3/(kg*K)]


E


1°. 1°


Unit Description

1    Time-scaling coefficient

W/(m-K) jhermal conductivity W/(m-K) Thermal conductivity kg/m3 Density

3/(kg -K) Heat capacity at constant pressure 1    Ratio of specific heats

W/m3 Heat source m/s Velocity field


Artificial Diffusion...


Cancel


Apply


Help




Wyszukiwarka

Podobne podstrony:
Subdomain Settings - Convection and Conduction (cc) Equation 6tspCpaT/at + V-(-kVT) = Q - pCpU VT T
Subdomain Settings - Convection and Conduction (cc) Equation ójsP^aT/et + V-(-kVT) = Q - pCpu-VT T =
L_*JV — Subdomain Settings - Convection and Conduction (cc) Equation 6lspCpaT/at + V-(-kVT) = Q - pC
X Subdomain Settings - Convection and Conduction (cc) Equation 6tspCp3T/3t + V-(-kVT) = Q - pCpu-VT
A nr Subdomain Settings - Convection and Conduction (cc) Equation 6lspCpaT/at + V-(-kVT) = Q - pCpU
Subdomain Settings - Corwection and Conduction (cc) Equation 6lspCpaT/at + V-(-kVT) = Q - pCpU VT T
ti te. TS PA i nr Boundary Settings - Convection and Conduction (cc) Equation T =
x le-3 x le-3 Boundary Settings - Convection and Conduction (cc) Equation T = T« Sełect by group Int
•V* COMSOL Multiphysics - Geoml/Convection and Conduction (cc): tarczal.mph   File Edit Options
Boundary Settings - Convcction and Conduction (cc) Equaton T-T« 3cund3n«s Groups B<xrdary
Subdomain Settings * Heat Transfer by Conduction (ht) Equation 6,SPCp0T/at * V-(kVT) - Q, T«
Subdomain Settings - Heat Transfer by Conduction (ht) Equation 6tspCp8T/3t - V-(kVT) = Q. T=
Subdomain Settings - Incompressible Navier-Stokes (ns) Equations pu-Vu = 7{-pi + n(Vu + (Vu)T)] + F
oundary Settings - Heat Transfer by Conduction (ht) MM Equation n-(kVT) = q0 + h(Tjnf ■ T) + Const(T
Subdomain Settings - General Heat Transfer (htgh) Equation 6,sPcpaT/at +V<-k7T) = Q T = temperatu
Boundary Settings - Heat Transfer by Conduction (ht) ■fil Equation n (kVT) = qQ + h(Tjnf - T) + Cons
Subdomain Settings - Incompressible Navier-Stokes (ns) Equations pu-Vu = V{-pI + n(Vu + (Vu)T)] + F
Subdomain Settings - General Heat Transfer (htgh) Equation ótspCp8T/8t + V-(-kVT) T =

więcej podobnych podstron