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Loop heat pipe-based solar thermal facade water heating system: A review of performance evaluation and enhancement

机译:基于环热管的太阳能热外立面水加热系统:绩效评估和增强综述

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摘要

To meet the demand for a high-efficiency, anti-freezing, and building-integrated solar water heating system, a versatile loop heat pipe-based solar thermal facade water heating system has been developed in recent years. To date, a comprehensive summary of evaluation indexes has not yet been reported for assessing the transient and steady-state performance of the loop heat pipe, which deserves to be determined because the overall thermal efficiency of the system is highly sensitive to the operational performance of the loop heat pipe. In addition, the heat transfer process within the system is analyzed along the three stages of the heat transfer path, namely, solar absorption, outdoor to indoor heat transportation, and water heating, to reveal the working mechanism of the system and clarify the factors influencing its behavior. In line with these three stages and practical requirements, the refined improvement strategies for system performance are elaborately summarized from three corresponding aspects, including the solar absorber structure, heat transfer fluid, and energy storage, to provide a reference for achieving a superior heat transfer effect. The particularity of the system lies in the involved heat and mass transfer phenomena and the latent heat thermal energy storage technology, which are the core issues worthy of in-depth exploration. Therefore, the system's potential for further development is outlined to promote market penetration. Through the current comprehensive analysis, the evaluation criteria of the operational characteristics of loop heat pipe and loop heat pipe-based solar thermal facade water heating systems as well as performance enhancement techniques are methodically expounded. This review is expected to lay a solid foundation for improving and extending the loop heat pipe-based solar thermal facade water heating system, along with achieving the targets for significant energy-saving and environmental benefits.
机译:为满足高效率,防冻和建筑集成的太阳能热水系统的需求,近年来开发了一种基于多功能环路热管的太阳能热外立面水加热系统。迄今为止,尚未向评估环路热管的瞬态和稳态性能进行评估指标的综合摘要,这值得确定,因为系统的总热效率对操作性能非常敏感环热管。此外,系统内的传热过程沿着传热路径的三个阶段分析,即太阳能吸收,室外热量运输和水加热,以揭示系统的工作机制并阐明影响因素它的行为。符合这三个阶段和实际要求,从三个相应的方面进行了精确的改进策略,从包括太阳能吸收结构,传热流体和能量存储,以提供用于实现优异传热效果的参考。系统的特殊性在于涉及的热量和传质现象和潜热热储能技术,这是值得深入探索的核心问题。因此,该系统的进一步发展潜力概述促进市场渗透率。通过目前的综合分析,有条不紊地阐述了环路热管和基于环路热管的运行特性的评价标准以及性能增强技术。该综述预计将为改进和延伸基于环路热管的太阳能热外立面水加热系统奠定了坚实的基础,以及实现了显着节能和环境效益的目标。

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