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Thermal performance characteristics of an absorber plate fin having temperature dependent thermal conductivity and overall loss coefficient

机译:具有取决于温度的热导率和总损耗系数的吸收器板翅片的热性能特征

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The prime objective of the present numerical study is to analyze the thermal performance characteristics of an absorber plate fin of a sheet and tube type solar flat plate collector of fixed collector area. Considering temperature dependent thermal conductivity and overall loss coefficient and assuming cubic temperature profile along the tube, pseudo-transient form of two-dimensional, highly nonlinear partial differential equation governing the steady state temperature distribution in the absorber plate fin is solved using Alternating Direction Implicit finite difference scheme. Keeping ambient temperature, fluid inlet temperature and number of tubes fixed, numerical results are presented and discussed for wide range of values of aspect ratio of the absorber plate, fluid outlet temperature, overall loss parameter and solar flux. Finally, it is found that there exists an upper limiting value of solar flux beyond which increase in heat transfer rate is insignificant. Further, it is concluded that fin efficiency remains independent of aspect ratio of absorber plate whereas it increases significantly with decrease in overall loss parameter and decreases slightly with increase in fluid outlet temperature. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本数值研究的主要目的是分析固定集热面积的板管式太阳能平板集热器的吸收板翅片的热性能特征。考虑到温度相关的导热系数和总损耗系数,并假设沿管的立方温度分布,使用交替方向隐式有限元求解了二维的,高度非线性的偏微分方程的准瞬态形式,该方程控制了吸收板翅片中的稳态温度分布。差异方案。保持环境温度,流体入口温度和管数固定不变,给出并讨论了吸收板高宽比,流体出口温度,总损耗参数和太阳通量的宽范围数值的数值结果。最后,发现存在太阳通量的上限值,在该上限值上,传热速率的增加是微不足道的。此外,得出的结论是,翅片效率保持与吸收板的长宽比无关,而翅片效率则随着总损耗参数的降低而显着增加,而随着流体出口温度的升高而略微降低。 (C)2015 Elsevier Ltd.保留所有权利。

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