Donga Ramesh K, Kumar Suresh, Velidi Gurunadh
Department of Mechanical and Aerospace Engineering, School of Engineering, University of Petroleum & Energy Studies (UPES), Dehradun, Uttarakhand, 248007, India.
Skill Faculty of Engineering and Technology, Shri Vishwakarma Skill University, Palwal, Haryana, 121102, India.
Sci Rep. 2024 Dec 30;14(1):31908. doi: 10.1038/s41598-024-83219-4.
This numerical investigation examines the performance and exergy analysis of parabolic trough solar collectors, focusing on the substitution of the conventional circular absorber with a rhombus-shaped absorber. By evaluating the thermal and fluid dynamics properties, this study aims to identify improvements in overall system performance and efficiency. This numerical study conducts a comprehensive thermal analysis of parabolic trough solar collectors by comparing a rhombus-shaped absorber with a conventional circular absorber. The analysis considers two rim angles of the parabolic trough, specifically 80° and 90°. Fluid flow rates ranging from 200 to 600 L per minute and inlet fluid temperatures spanning from 400 to 650 K are evaluated for each configuration. The objective is to determine the impact of absorber shape, rim angle, flow rate, and inlet temperature on the thermal performance and exergy efficiency of the system. Additionally, a slope error range of 0 to 2.5 mrad is incorporated into the study. The optical efficiency, thermal efficiency, exergy efficiency, and overall efficiency of the parabolic trough solar collector are estimated and compared for both absorber shapes. Results indicate that the thermal performance of the collector improves significantly with the rhombus-shaped absorber, showing maximum increases of 2.88% in thermal efficiency, 1.45% in exergy efficiency, and 1.4% in overall efficiency compared to the conventional circular absorber. These findings provide valuable insights for optimizing the design of parabolic trough solar collectors to enhance their overall efficiency and energy conversion effectiveness.
这项数值研究考察了抛物槽式太阳能集热器的性能和火用分析,重点是用菱形吸收器替代传统的圆形吸收器。通过评估热和流体动力学特性,本研究旨在确定整个系统性能和效率的改进之处。这项数值研究通过比较菱形吸收器和传统圆形吸收器,对抛物槽式太阳能集热器进行了全面的热分析。分析考虑了抛物槽的两个边缘角,具体为80°和90°。针对每种配置,评估了每分钟200至600升的流体流速以及400至650 K的入口流体温度。目的是确定吸收器形状、边缘角、流速和入口温度对系统热性能和火用效率的影响。此外,研究中纳入了0至2.5毫弧度的斜率误差范围。对两种吸收器形状的抛物槽式太阳能集热器的光学效率、热效率、火用效率和总效率进行了估算和比较。结果表明,与传统圆形吸收器相比,采用菱形吸收器时集热器的热性能显著提高,热效率最高提高2.88%,火用效率提高1.45%,总效率提高1.4%。这些发现为优化抛物槽式太阳能集热器的设计以提高其整体效率和能量转换效率提供了有价值的见解。