Using the table below, if the capture efficiency of the solar system n= 0.5, find effective...
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Using the table below, if the capture efficiency of the solar system n= 0.5, find effective thermal resistance of the collector. of Solar Constant S 700 Wm Temperature of the collector Tot 35°C Temperature of the cover T. 35°C Temperature of the surrounding air 5°C Temperature of the sky -10°C Transmission and absorption coefficients of the collector 0.9 Emissivity of glass Specific heat of water Convection coefficient the system Area of collector 4184 Jkg K 2.82Wm K 3 m 0.042 kg/s 30°C Rate of flow of water through the collector Input temperature of the water 5.3 x 10³ 0 -3.9 x 10-³0 OLIX 10-20 07.1x10-³0 21x1020 TA TEY ta & C dm/dt T. Using the table below, if the capture efficiency of the solar system n= 0.5, find effective thermal resistance of the collector. of Solar Constant S 700 Wm Temperature of the collector Tot 35°C Temperature of the cover T. 35°C Temperature of the surrounding air 5°C Temperature of the sky -10°C Transmission and absorption coefficients of the collector 0.9 Emissivity of glass Specific heat of water Convection coefficient the system Area of collector 4184 Jkg K 2.82Wm K 3 m 0.042 kg/s 30°C Rate of flow of water through the collector Input temperature of the water 5.3 x 10³ 0 -3.9 x 10-³0 OLIX 10-20 07.1x10-³0 21x1020 TA TEY ta & C dm/dt T.
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