利用纳米颗粒提高百叶窗翅片太阳能空气加热器热效率的最佳集热器长宽比

Q4 Materials Science
Subhash Chand, Mayank Srivastava, Priyanka Nimesh, Gopal Kaliyaperumal, Asheesh Sehgal, Praveen Kumar, Govindarasan Devarajan
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引用次数: 0

摘要

本研究调查了集热器长宽比对使用纳米颗粒的百叶窗翅片太阳能空气加热器(LFSAH)热性能的影响。对各种集热器长宽比和质量流量(MFR)进行了分析,以确定它们对传热和整个系统性能的影响。研究结果表明,改变集热器的长宽比对太阳能空气加热器(SAH)的热效率和传热性能有显著影响。据观察,增加长宽比可以增加热量传输,提高系统的热效率。当长宽比为 4:1 时,LFSAH 和 PSAH 的热效率最高,分别为 81.63% 和 68.13%。研究结果为改进 LFSAH 的设计和运行提供了有用信息,同时将长宽比作为一个关键变量加以考虑。就太阳能空气加热器而言,优化长宽比具有很大的好处。通过提高能源效率,它可以减少对化石燃料的依赖,并有效减少空气污染。此外,这种优化还有助于节约用水,降低地下水和地表水污染的风险。此外,推广节能供暖系统有助于降低土壤污染风险。因此,该研究强调了在设计百叶窗翅片太阳能空气加热器时考虑长宽比的重要性,为开发可持续供热系统提供了宝贵的见解,从而促进更清洁的环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Collector Aspect Ratio for Improving Thermal Efficiency of Louvered Finned Solar Air Heaters Using Nanoparticles
The current study investigated the effect of collector aspect ratio on the thermal performance of a louvered finned solar air heater (LFSAH) using nanoparticles. Analyses are performed on various collector aspect ratios and mass flow rates (MFR) to determine their impact on heat transfer and overall system performance. The findings reveal that changing the collector aspect ratio has significant effects on the thermal efficiency and heat transfer properties of a solar air heater (SAH). It has been observed that increasing the aspect ratio increases heat transmission and improves the thermal efficiency of the system. When an aspect ratio of 4:1 was used, LFSAH and PSAH attained the highest thermal efficiency, with percentages of 81.63% and 68.13%, respectively. The study’s findings provide useful information for improving the design and operation of LFSAH while keeping the aspect ratio as a critical variable in consideration. In the context of solar air heaters, optimizing the aspect ratio offers substantial benefits. By enhancing energy efficiency, it reduces reliance on fossil fuels and effectively minimizes air pollution. Additionally, this optimization contributes to water conservation and mitigates the risk of groundwater and surface water pollution. Furthermore, promoting energy-efficient heating systems helps mitigate soil contamination risks. Hence, the study underscores the importance of considering the aspect ratio in the design of louvered finned solar air heaters, providing valuable insights for the development of sustainable heating systems that foster a cleaner environment.
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来源期刊
NanoWorld Journal
NanoWorld Journal Materials Science-Polymers and Plastics
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