A simple solar collector is built by placing a 5-cmdiameter clear plastic tube around a garden hose whose outer diameter is 1.6 cm. The hose is painted black to maximize solar absorption, and some plastic rings are used to keep the spacing between the hose and the clear plastic cover constant. During a clear day, the temperature of the hose is measured to be 65°C, while the ambient air temperature is 26°C. Determine the rate of heat loss from the water in the hose per meter of its length by natural convection. Also, discuss how the performance of this solar collector can be improved. Evaluate air properties at an average temperature of 50° C and 1 atm pressure. Is this a good assumption?

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter20: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 20.8OQ: Beryllium has roughly one-half the specific heat of water (H2O). Rank the quantities of energy input...
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A simple solar collector is built by placing a 5-cmdiameter
clear plastic tube around a garden hose whose outer
diameter is 1.6 cm. The hose is painted black to maximize
solar absorption, and some plastic rings are used to keep the
spacing between the hose and the clear plastic cover constant.
During a clear day, the temperature of the hose is measured
to be 65°C, while the ambient air temperature is 26°C.
Determine the rate of heat loss from the water in the hose
per meter of its length by natural convection. Also, discuss
how the performance of this solar collector can be improved.
Evaluate air properties at an average temperature of 50° C and
1 atm pressure. Is this a good assumption?

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