Heat transfer Enhancement of Impinging Jet-Corrugated Solar Air Heaters

Aneeq Raheem, Waseem Siddique, K. Waheed, Imran Aziz, Irfan Javed, Numan Iqbal, T. Salameh, K. Qureshi
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引用次数: 1

Abstract

Solar Air Heater (SAH) is one of many applications of solar energy, but it has low thermal performance. To cater to this issue, a novel corrugated jet-impinging channel has been proposed for the absorbing plate of SAHs. The Nusselt number, pressure loss pumping power, and friction factor were computed by experimental and numerical studies for three different arrangements of jets i.e., 1×1 square, 2×2, and 3×3 jet array with three target plates i.e., smooth, trapezoidal, and sinusoidal corrugated plates over the Reynolds number range of 1740–2700 and jet-to-target plate spacing of 5.1–14.6. It was observed that jet-to-target plate distance and multiple jets impinging can affect the heat transfer enhancement significantly. An optimization study has been performed using the statistical Taguchi method. The optimum value of Nusselt number was found for the trapezoidal corrugated target plate, with 3×3 multiple jet impingement, jet-to-target plate distance of 5.1, and Reynolds number value of 2700 while the optimum value of friction factor was found for 3×3 jet impingement. CFD and experimental data are found to be in good agreement. An increase of 11 times was observed in Thermal Performance Factor as compared to the base case. Trapezoidal corrugation seems to be the effective profile for SAHs.
提高喷射波纹太阳能空气加热器的传热性能
太阳能空气加热器(SAH)是太阳能的众多应用之一,但其热性能较低。针对这一问题,有人提出了一种用于太阳能空气加热器吸热板的新型波纹状喷射仿形通道。通过实验和数值研究,计算了在雷诺数范围为 1740-2700 和射流与目标板间距为 5.1-14.6 的条件下,三种不同排列的射流(即 1×1 方形、2×2 和 3×3 射流阵列)与三种目标板(即光滑板、梯形板和正弦波纹板)的努塞尔特数、压力损失泵功率和摩擦因数。研究发现,射流到目标板的距离和多个射流的撞击会显著影响传热效果。使用田口统计法进行了优化研究。发现梯形波纹靶板在 3×3 多射流撞击、射流到靶板距离为 5.1、雷诺数为 2700 的情况下,努塞尔特数为最佳值,而 3×3 射流撞击的摩擦因数为最佳值。发现 CFD 和实验数据非常吻合。与基本情况相比,热性能系数增加了 11 倍。梯形波纹似乎是 SAH 的有效剖面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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