Department of Mechanical Engineering, National Engineering College, Kovilpatti, Tamil Nadu, India.
Centre for Nonlinear Systems, Chennai Institute of Technology, Chennai, Tamil Nadu, 600069, India.
Environ Sci Pollut Res Int. 2024 Jun;31(27):39406-39420. doi: 10.1007/s11356-024-33786-w. Epub 2024 May 31.
Numerous research studies have found that a double-pass solar air heater (DPSAH) performs better than a single-pass solar air heater (SAH). This suggested study aims to evaluate the performance of a DPSAH setup in Southern Tamil Nadu, India. Several artificial roughness features have been incorporated into the solar black-coated absorber plate for this examination. Broken ribs with semi-circular and semi-polygonal shapes are used and explicitly tested on the absorber plate. Next, the efficiency of these rib designs is contrasted with a typical flat plate DPSAH. These studies also employ three different mass flow rates (0.01 kg/s, 0.02 kg/s, and 0.03 kg/s), enabling a thorough assessment of the DPSAH system's performance at each rate. These studies' findings demonstrate that adding artificial roughness to the solar collector plate has a beneficial effect on the turbulence of fluid flows. As a result, this innovation increases the double-pass solar air heater's (DPSAH) heat transfer rate. It is noteworthy that compared to the DPSAH with flat plates, both rib designs perform better. It is important to remember that the semi-polygonal ribs function better than the semi-circular ones. The average efficiency values for the semi-polygonal rib structure are 17.1%, 18.7%, and 19.1% greater than those seen for flat plates. These efficiency values are additionally 4.4%, 7.4%, and 8.7% higher than those attained with the semi-circular rib topologies at flow rates of 0.01 kg/s, 0.02 kg/s, and 0.03 kg/s, respectively. The study goes into considerable detail on how particular rib patterns can be advantageous economically and environmentally.
大量研究表明,双道太阳能空气加热器(DPSAH)的性能优于单道太阳能空气加热器(SAH)。本研究旨在评估印度泰米尔纳德邦南部的 DPSAH 装置的性能。为此,在太阳能黑色涂层吸收器板上采用了几种人工粗糙特征。使用了带有半圆形和半多边形的断肋,并明确在吸收器板上进行了测试。然后,将这些肋设计的效率与典型的平板 DPSAH 进行了对比。这些研究还采用了三种不同的质量流速(0.01kg/s、0.02kg/s 和 0.03kg/s),以便在每种流速下对 DPSAH 系统的性能进行全面评估。这些研究的结果表明,在太阳能集热器板上增加人工粗糙度对流体流动的湍流有有益的影响。因此,这种创新提高了双道太阳能空气加热器(DPSAH)的传热速率。值得注意的是,与平板 DPSAH 相比,两种肋设计的性能都更好。需要记住的是,半多边形肋的性能优于半圆形肋。半多边形肋结构的平均效率值比平板分别高出 17.1%、18.7%和 19.1%。这些效率值还比在流速为 0.01kg/s、0.02kg/s 和 0.03kg/s 时采用半圆形肋拓扑结构分别高出 4.4%、7.4%和 8.7%。该研究详细介绍了特定肋模式在经济和环境方面的优势。