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NUMERICAL STUDY OF CONJUGATE HEAT TRANSFER IN A BIPV-THERMAL SYSTEM(3)
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BIPV/T Building integrated photovoltaic-thermal
wg8t'bn*^"TGW5{G0Cp Specific heat capacity of air
H&z+tK#L0G Incident solar radiation绿色建筑博客*s_!V7H5{N5M
Gb Generation of turbulence kinetic energy due to buoyancy绿色建筑博客 S8ewU i8g L{_
Gk Generation of turbulence kinetic energy due to themean
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[Kgc0 velocity gradients绿色建筑博客*^8@I;S0Tde
H Height of the air flow cavity
Oh!SUCIy0hc Convective heat transfer coefficient in cavity
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A2r _3TuT0ho Exterior heat transfer coefficient绿色建筑博客!MT8x0JQ;Nf5K
hr Radiative heat transfer coefficient绿色建筑博客4B qo{C[i{;]/l+V
K Thermal conductivity of air
?R1r9Not){0k Turbulent kinetic energy绿色建筑博客N0q;?P
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PV Photovoltaic
?Q~$h;_J0Sk User defined source term for k绿色建筑博客:J Y1WxI([e$l
Sε User defined source term for ε
cR%Yd2eqn1O0T Air temperature in the cavity
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e0R0Tref Reference temperature of air flow
hHay-y0Tin Insulation temperature (facing cavity)
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L"CME6tn*JC2t0U Air velocity in the x direction绿色建筑博客
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V Air velocity in the y direction绿色建筑博客:i)U;u/\_2Hv8v
W Width of cavity
o;j!Iyz0x Horizontal direction in the air flow cavity
%L2AEk/ks1o;tvx0y Vertical direction in the air flow cavity