a. One thousand cfm of outdoor air enters a building located in Regina, Saskatchewan, Canada. The indoor air design conditions are 72 F db and 30 % RH while the outdoor air design conditions are decided to be the 99.6% value. Assuming sea level pressure, compute the latent heat loss due to the outdoor air in Btu/hr. What will be the latent heat loss in case the building is located in Riyadh? b. Compute the lost head in feet of water for 2000 gpm of chilled water flowing through 1000 ft of 8" diameter schedule 40 commercial steel pipe.

Power System Analysis and Design (MindTap Course List)
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ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
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а.
Ön thousand cfm of outdoor air enters a building located in Regina, Saskatchewan, Canada. The indoor air
design conditions are 72 F db and 30 % RH while the outdoor air design conditions are decided to be the
99.6% value. Assuming sea level pressure, compute the latent heat loss due to the outdoor air in Btu/hr. What
will be the latent heat loss in case the building is located in Riyadh?
b. Compute the lost head in feet of water for 2000 gpm of chilled water flowing through 1000 ft of 8" diameter
schedule 40 commercial steel pipe.
Transcribed Image Text:а. Ön thousand cfm of outdoor air enters a building located in Regina, Saskatchewan, Canada. The indoor air design conditions are 72 F db and 30 % RH while the outdoor air design conditions are decided to be the 99.6% value. Assuming sea level pressure, compute the latent heat loss due to the outdoor air in Btu/hr. What will be the latent heat loss in case the building is located in Riyadh? b. Compute the lost head in feet of water for 2000 gpm of chilled water flowing through 1000 ft of 8" diameter schedule 40 commercial steel pipe.
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