不同倾角下熔盐储能太阳能热水系统性能优化研究

IF 6.4 4区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Natrayan Lakshmaiya, Gobikrishnan Udhayakumar, Prem Kumar Reddy M, Karthick M, Ramya Maranan, Prabhu Paramasivam, Asefash Getachew Girma
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引用次数: 0

摘要

本研究提出了一种通过集成熔盐储能(MSTES)来提高太阳能热水系统性能的新方法,并评估了其在不同倾斜角度(15°,30°,45°和60°)下的有效性。虽然之前的研究广泛地探索了太阳能集热器和传统的存储介质,但实验评估MSTES和倾角优化对热性能的综合影响的研究有限。为了解决这个问题,采用了一个抛物线槽集热器系统,使用硝酸钠和硝酸钾的共晶混合物,以其高热稳定性和能量保留性而闻名。关键性能指标,包括集热器效率,传热系数和存储效率,在不同的倾斜配置进行了分析。结果表明,当倾角为60°时,集热器效率可达75%,传热系数超过880 W m−2 K,在太阳辐射峰值时存储效率可达61%。这些发现突出了MSTES在最大限度地吸收和储存太阳能方面的有效性,从而有助于开发适应各种气候条件和能源需求的高效太阳能热系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Performance Optimization of Solar Water Heating Systems Using Molten Salt Thermal Energy Storage Across Varying Tilt Angles

Performance Optimization of Solar Water Heating Systems Using Molten Salt Thermal Energy Storage Across Varying Tilt Angles

This study proposes a novel approach to enhance the performance of solar water heating systems by integrating molten salt thermal energy storage (MSTES) and evaluating its effectiveness under varying tilt angles (15°, 30°, 45°, and 60°). While prior research has extensively explored solar collectors and conventional storage media, there have been limited studies that experimentally assessed the combined effect of MSTES and tilt angle optimization on thermal performance. To address this gap, a parabolic trough collector system is employed using a eutectic mixture of sodium nitrate and potassium nitrate, known for its high thermal stability and energy retention. Key performance metrics, including collector efficiency, heat transfer coefficient, and storage efficiency, are analyzed under different tilt configurations. Results revealed that a 60° tilt angle offered the best performance, achieving a collector efficiency of 75%, a heat transfer coefficient exceeding 880 W m2 K, and a storage efficiency of 61% during peak solar radiation. These findings highlight the effectiveness of MSTES in maximizing solar energy absorption and storage, thereby contributing to the development of high-efficiency solar thermal systems that are adaptable to diverse climatic conditions and energy demands.

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来源期刊
Global Challenges
Global Challenges MULTIDISCIPLINARY SCIENCES-
CiteScore
8.70
自引率
0.00%
发文量
79
审稿时长
16 weeks
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