Q1: Calculate total heat gain through a roof skylight, shown in figure 1, during July at 12 o'clock. The glass is a medium color painted glass. The skylight is with dimension of 1.5 m in radius. The inside design condition is maintained at 20 °C, and outside temperature is 35 °C. Take the overall heat transfer coefficient of the glass, 5.8 W/m. C. The building is at location 40° North Latitude.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q1: Calculate total heat gain through a roof skylight, shown in figure 1, during July at
12 o'clock. The glass is a medium color painted glass. The skylight is with dimension of
1.5 m in radius. The inside design condition is maintained at 20 °C, and outside
temperature is 35 °C. Take the overall heat transfer coefficient of the glass, 5.8 W/m. C.
The building is at location 40° North Latitude.
Figure 1: roof skylight
Transcribed Image Text:Q1: Calculate total heat gain through a roof skylight, shown in figure 1, during July at 12 o'clock. The glass is a medium color painted glass. The skylight is with dimension of 1.5 m in radius. The inside design condition is maintained at 20 °C, and outside temperature is 35 °C. Take the overall heat transfer coefficient of the glass, 5.8 W/m. C. The building is at location 40° North Latitude. Figure 1: roof skylight
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