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Parametric Study on the Thermal Performance and Optimal Design Elements of Solar Air Heater Enhanced with Jet Impingement on a Corrugated Absorber Plate

机译:瓦楞纸板射流撞击射流冲击的太阳能空气加热器热性能和最优设计元素的参数研究

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摘要

Previous works revealed that cross-corrugated absorber plate design and jet impingement on a flat absorber plate resulted in a significant increase in the performance of a solar air heater (SAH). Involving these two designs into one continuous design to improve the SAH performance remains absent in the literature. This study aimed to evaluate the achieved enhancement on performance parameters of a SAH with jet impingement on a corrugated absorber plate. An energy balance model was developed to compare the performance parameters of the proposed SAH with the other two SAHs. At a clear sky day and a mass flow rate of 0.04 kg/s, the hourly results revealed that the max fluid outlet temperatures for the proposed SAH, jet-to-flat plate SAH, and cross-corrugated plate SAH are 321, 317, and 313 K, respectively; the max absorber plate temperatures are 323.5, 326.5, and 328 K, respectively; the maximum temperature differences between the absorber plate and fluid outlet are similar to 3, 9, and 15 K, respectively; the max efficiencies are 65.7, 64.8, and 60%, respectively. Statistical t-test results confirmed significant differences between the mean efficiency of the proposed SAH and SAH with jet-to-flat plate. Hence, the proposed design is considered superior in improving the performance parameters of SAH compared to other designs.
机译:以前的作品揭示了平面吸收板上的交叉波纹吸收板设计和喷射冲击导致太阳能空气加热器(SAH)的性能显着增加。涉及这两种设计成一个连续设计,以改善SAH表现仍然存在于文献中。本研究旨在评估瓦楞纸板射流冲击的SAH性能参数的增强。开发了一种能量平衡模型,以将建议的SAH的性能参数与其他两个SAHS进行比较。在清晰的天空日和大众流量的0.04公斤/秒,每小时结果表明,所提出的SAH,喷射平板SAH和交叉波纹板SAH的最大流体出口温度为321,317,和313 k分别;最大吸收板温度分别为323.5,326.5和328 k;吸收板和流体出口之间的最大温度差异类似于3,9和15 k;最大效率分别为65.7,64.8和60%。统计T检验结果证实了所提出的SAH和SAH与喷射平板的平均效率之间的显着差异。因此,所提出的设计被认为是优越的,即改善SAH的性能参数与其他设计相比。

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    Univ Putra Malaysia Fac Engn Mech Dept Serdang 43400 Selangor Malaysia;

    King Fahd Univ Petr &

    Minerals CoRERE Dhahran 31261 Saudi Arabia;

    Univ Putra Malaysia Fac Engn Mech Dept Serdang 43400 Selangor Malaysia;

    Univ Kebangsaan Malaysia Solar Energy Res Inst Bangi 43600 Selangor Malaysia;

    Univ Kebangsaan Malaysia Solar Energy Res Inst Bangi 43600 Selangor Malaysia;

    Univ Kebangsaan Malaysia Solar Energy Res Inst Bangi 43600 Selangor Malaysia;

    Univ Putra Malaysia Fac Engn Mech Dept Serdang 43400 Selangor Malaysia;

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  • 正文语种 eng
  • 中图分类 物理化学计量;
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  • 入库时间 2022-08-20 02:21:19

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