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Entropy generation and thermodynamic analysis of solar air heaters with artificial roughness on absorber plate

机译:吸收板上人工粗糙的太阳能空气加热器的熵产生和热力学分析

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摘要

This paper presents mathematical modelling and numerical analysis to evaluate entropy generation analysis (EGA) by considering pressure drop and second law efficiency based on thermodynamics for forced convection heat transfer in rectangular duct of a solar air heater with wire as artificial roughness in the form of arc shape geometry on the absorber plate. The investigation includes evaluations of entropy generation, entropy generation number, Bejan number and irreversibilities of roughened as well as smooth absorber plate solar air heaters to compare the relative performances. Furthermore, effects of various roughness parameters and operating parameters on entropy generation have also been investigated. Entropy generation and irreversibilities (exergy destroyed) has its minimum value at relative roughness height of 0.0422 and relative angle of attack of 0.33, which leads to the maximum exergetic efficiency. Entropy generation and exergy based analyses can be adopted for the evaluation of the overall performance of solar air heaters.
机译:本文提出了一种数学模型和数值分析,通过考虑基于热力学的压降和第二定律效率来评估熵产生分析(EGA),该热力学用于将金属丝作为人造粗糙度的电弧形式的太阳能空气加热器矩形管道中的强制对流换热吸收板上的几何形状。该研究包括对熵产生,熵产生数,Bejan数和粗糙化以及光滑吸收板式太阳能空气加热器的不可逆性进行评估,以比较其相对性能。此外,还研究了各种粗糙度参数和操作参数对熵产生的影响。熵的产生和不可逆性(能量被破坏)在相对粗糙度高度0.0422和相对攻角0.33时具有最小值,这导致了最大的能量效率。可以采用基于熵产生和能值分析的方法来评估太阳能空气加热器的整体性能。

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