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Opportunities and challenges of PCM-to-air heat exchangers (PAHXs) for building free cooling applications-A comprehensive review

机译:PCM-空气热交换器(PAHX)在建筑免费制冷应用中的机遇与挑战-全面回顾

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With high energy consumption trend in buildings, the adoption of thermal energy storage systems toward reducing cooling load has been increased in recent years. Subsequently, utilizing the concept of latent heat thermal energy storage (LHTES) through phase change materials (PCMs) have been widely discussed in the literature. This paper is a comprehensive review of the utilization of PCM-to-Air Heat Exchangers (PAHXs) for building free cooling applications. The potential and limitations of using PAHXs in free cooling applications are discussed in detail, focusing on hot desert climate. Significant system influencing factors such as inlet temperature, phase change temperature, and airflow rates are analyzed and their impact on the thermal performance of PAHXs free cooling applications are addressed. Previous studies claimed that continuously maintaining outlet air temperature (of PAHX) within the preferred indoor thermal comfort is a system limitation, especially in extreme climates with exceptionally high cooling demand. However, they have assured the increased cooling potential by adopting multi-PCM approach and integration with other passive technologies in free cooling systems to increase system storage abilities and satisfy workability under high inlet temperatures. For magnifying the free cooling system's cooling abilities in hot desert climate, this paper recommends considering the potential of nighttime sky radiation during the PCM charging process. The discussions made in the paper will be helpful in understanding the influencing parameters of PAHXs system for free cooling application, especially in hot desert climate.
机译:随着建筑物中高能耗的趋势,近年来已经越来越多地采用热能存储系统以减少冷却负荷。随后,通过相变材料(PCM)利用潜热热能存储(LHTES)的概念在文献中已被广泛讨论。本文是对PCM空气热交换器(PAHX)在建筑免费制冷应用中的应用的全面综述。详细讨论了在自然冷却应用中使用PAHX的潜力和局限性,重点是炎热的沙漠气候。分析了重要的系统影响因素,例如入口温度,相变温度和气流速率,并解决了它们对PAHX自由冷却应用的热性能的影响。先前的研究声称,将(PAHX的)出口空气温度持续保持在最佳的室内热舒适度内是系统的局限性,特别是在对制冷需求异常高的极端气候中。但是,他们通过在自由冷却系统中采用multi-PCM方法并与其他无源技术集成来确保增加的冷却潜力,以提高系统的存储能力并满足高入口温度下的可操作性。为了扩大沙漠热气候中的自然冷却系统的冷却能力,本文建议考虑PCM充电过程中夜间天空辐射的可能性。本文中的讨论将有助于理解PAHXs系统在自然冷却应用中的影响参数,尤其是在沙漠热气候中。

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