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Thermal performance analysis of the glass evacuated tube solar collector with U-tube

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Indexed by:期刊论文

Date of Publication:2010-09-01

Journal:11h International Conference on Air Distribution in Rooms (ROOMVENT 2009)

Included Journals:SCIE、EI、CPCI-S

Volume:45

Issue:9,SI

Page Number:1959-1967

ISSN No.:0360-1323

Key Words:Thermal performance analysis; Glass evacuated tube; Solar collector; U-tube

Abstract:In this paper, based on the energy balance for the glass evacuated tube solar collector with U-tube, the thermal performance of the individual glass evacuated tube solar collector is investigated by analytical method. The solar collector considered in this study is a two-layered glass evacuated tube, and the absorber film is deposited in the outer surface of the absorber tube. The heat loss coefficient and heat efficiency factor are analyzed using one-dimensional analytical solution. And the influence of air layer between the absorber tube and the copper fin on the heat efficiency is also studied. The results show that the function relation of the heat loss coefficient of the glass evacuated tube solar collector with temperature difference between the absorbing coating surface and the ambient air is nonlinear. In the different ambient temperatures, the heat loss coefficient of the solar collector should be calculated by different expressions. The heat efficiency factor will be subject to influence of air layer between absorber tube and the copper fin. Specially, the influence is remarkable when the heat loss coefficient of the collector is large. When the synthetical conductance amounts to 5 W/m K, the solar collector efficiency decreases 10%, and the outlet fluid temperature decreases 16% compared with the case which the air thermal resistance is neglected. And the surface temperature of the absorbing coating increases 30 C due to the effect of air thermal resistance. So the surface temperature of the absorbing coating is an important parameter to evaluate the thermal performance of the glass evacuated tube solar collector. (C) 2010 Elsevier Ltd. All rights reserved.

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