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Second law of thermodynamics analysis for nanofluid turbulent flow inside a solar heater with the ribbed absorber plate

机译:罗纹吸收板纳米流体肿瘤流动热力学分析的第二律规律

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摘要

Employing rough surfaces and nanofluids in solar heater ducts are recognized as effective techniques to improve thermal performances of these devices. In this paper, the second law of thermodynamics analysis is performed for nanofluid turbulent flow in a solar heater duct with rib roughness on the absorber plate. The effects of different parameters including rib height, rib wedge angle, rib pitch, Reynolds number, and nanofluid concentration on thermal and frictional irreversibilities are investigated. The results indicated that the thermal entropy generation decreases about 11.1% by using nanofluid with concentration of 0.04. The frictional and thermal entropy generations decrease by increasing the rib pitch. Moreover, the thermal entropy decreases about 21.05% by increasing the rib height in the range of 0.025-0.033 for Re=3200. Finally, it is found that the thermal entropy generation decreases by increasing the wedge angle of the rib.
机译:在太阳能加热器管道中使用粗糙表面和纳米流体被认为是改善这些装置的热性能的有效技术。 在本文中,对具有在吸收板上的肋粗糙度的太阳能加热器管道中的纳米流体湍流进行了第二热力学分析法。 研究了包括肋骨高度,肋骨楔角,肋间距,雷诺数和纳米流体浓度在热和摩擦不缩醛上的不同参数的影响。 结果表明,通过使用纳米流体的浓度为0.04,热熵产生约11.1%。 通过增加肋间距,摩擦和热熵几代几代减少。 此外,通过增加0.025-0.033的RE = 3200,热熵通过增加肋高度降低约21.05%。 最后,发现热熵产生通过增加肋的楔角来减小。

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