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Novel method of thermal behavior prediction of evacuated tube solar collector

机译:抽空管太阳能收集器的热行为预测的新方法

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摘要

Heat pipe evacuated tube solar collectors (HPETCs) are a type of solar collectors with appealing characteristics for the application in solar water heating (SWH) technologies. In order to better understand the heat transfer phenomena in HPETCs and improve their efficiency, there is a need for a fast and robust numerical tool. Due to the complexity of the heat transfer processes involved in modeling a collector's performance, direct numerical analysis solutions (DNS) are computationally cumbersome. Recent studies have shown that resistance network (RN) models are suitable tools for studying the performance and thermal behavior of HPETCs. In this work, a novel method of resistance network based proper orthogonal decomposition (RNPOD) is presented which can not only consider the geographical and meteorological characteristics of the ambient surroundings, but also take into account the peripheral temperature distribution of a single HPETCs. Once the temperatures at each instance in time have been calculated, a POD method is used to predict the thermal behavior of the collector with desired temporal accuracy. The obtained results of this study are cross-validated with the previous experimental work of the authors, illustrating that the model is able to predict the peripheral temperature distribution with a maximum error of 10%.
机译:热管疏散管太阳能收集器(HPETCS)是一种太阳能收集器,具有吸引人的应用,适用于太阳能水供暖(SWH)技术。为了更好地了解HPETCS中的传热现象并提高其效率,需要一种快速且坚固的数值工具。由于涉及收集器性能的传热过程的复杂性,直接数值分析解决方案(DNS)是计算繁琐的。最近的研究表明,电阻网络(RN)模型是研究HPETCS的性能和热行为的合适工具。在这项工作中,提出了一种基于电阻网络的电阻网络的新方法,其不仅可以考虑周围环境的地理和气象特性,而且还考虑了单个HPETC的外围温度分布。一旦已经计算了每个实例的温度,则使用POD方法来预测收集器的热行为具有所需的时间精度。本研究的获得结果与作者的先前实验工作交叉验证,说明该模型能够预测最大误差为10%的外周温度分布。

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