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首页> 外文期刊>International Journal of Mechanical Sciences >Numerical investigation on heat transfer enhancement of solar air heater using sinusoidal corrugations on absorber plate
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Numerical investigation on heat transfer enhancement of solar air heater using sinusoidal corrugations on absorber plate

机译:吸收板上的正弦波纹太阳能加热器传热增强的数值研究

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This paper presents the effect of sinusoidal profiled absorber plate on augmented heat transfer and corresponding thereto-hydraulic performance of solar air heater using three dimensional Computational Fluid Dynamics (CFD) simulation for the flow Reynolds number ranging between 4,000 and 24,000. The effect of variation of design parameters of corrugated absorber plate such as the non-dimensional wavelength and aspect ratio on the thermo-hydraulic performance is brought out. The aspect ratio is varied between 1.5 and 4.0 while the normalized wavelength is varied between 1.0 and 6.0. The study reveals that the presence of sinusoidal corrugations provides increased flow disturbances leading to considerable enhancement in heat transfer. It is found that the use of lower values of non-dimensional wavelength and aspect ratio leads to higher thermal efficiency. The average increase in thermal efficiency is about 12.5% as compared to the base model for the configuration having an aspect ratio of 1.5 and non-dimensional wavelength of 1.0. In terms of effective efficiency, the sinusoidal corrugations are found to be highly effective at lower flow rate conditions and generally have a relatively narrow useful operating range of flow Reynolds number. The aspect ratio and non-dimensional wavelength have significant influence on the effective efficiency. The pumping power requirement is generally found to be relatively higher as compared to the base model owing to increased flow obstruction by the corrugations. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了正弦异形吸收板对增强传热的影响,使用三维计算流体动力学(CFD)模拟在4,000到24,000之间的流动雷诺数的三维计算流体动力学(CFD)仿真对应于太阳能空气加热器的液压性能。拉开了波纹吸收板设计参数的变化效果,如非尺寸波长和纵横比对热液性能的影响。纵横比在1.5和4.0之间变化,而归一化波长在1.0和6.0之间变化。该研究表明,正弦波纹的存在提供了增加的流动障碍,导致热传递的增强。发现使用较低值的非尺寸波长和纵横比值导致较高的热效率。与具有1.5的纵横比和非尺寸波长为1.0的结构的基础模型相比,热效率的平均增加约为12.5%。在有效效率方面,发现正弦波纹在较低的流速条件下非常有效,并且通常具有相对狭窄的流动雷诺数的操作范围。纵横比和非尺寸波长对有效效率有显着影响。由于波纹的流量阻塞增加,泵浦功率要求通常被发现与基础模型相比相对较高。 (c)2018年elestvier有限公司保留所有权利。

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