Performance evaluation and multi-objective optimization of a tubular indirect evaporative cooler integrated with moisture-conducting fibers

IF 3.5 2区 工程技术 Q1 ENGINEERING, MECHANICAL
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Abstract

Indirect evaporative cooling (IEC) technology is an energy-efficient approach for regulating the indoor thermal environment of buildings. The conventional tubular indirect evaporative cooler (TIEC) may have a relatively low cooling efficiency due to poor wettability issues. The application of moisture-conducting fibers provides a feasible way to solve the above problem. However, the integration of moisture-conducting fibers with TIEC is still in the exploratory stage. This study proposed a novel moisture-conducting fiber-assisted TIEC and conducted a multi-objective optimization. An experimental facility and theoretical model of the proposed moisture-conducting fiber-assisted TIEC were developed. Based on the numerical model validated by experiments and response surface methodology (RSM), the regression models for performance prediction of the cooler were established. Eight input parameters including inlet air parameters, operating parameters and geometric parameters were selected, and four performance evaluation indicators were chosen as output responses. The parameter sensitivity of the regression models was analyzed. The multi-objective optimization was performed by considering the influence of different relative weights assigned to the output responses. Furthermore, the performance of the optimized cooler applied in different climate zones was predicted. The results showed that the product air temperature drop could achieve 8.8–11.3 °C after cooling by the cooler. The established regression models can predict the performance of the moisture-conducting fiber-assisted TIEC conveniently and effectively, which is expected to guide the design and optimization of engineering practices.

集成了导湿纤维的管式间接蒸发冷却器的性能评估和多目标优化
间接蒸发冷却(IEC)技术是一种调节建筑物室内热环境的节能方法。传统的管式间接蒸发冷却器(TIEC)由于润湿性差,冷却效率相对较低。导湿纤维的应用为解决上述问题提供了一种可行的方法。然而,导湿纤维与 TIEC 的结合仍处于探索阶段。本研究提出了一种新型导湿纤维辅助 TIEC,并进行了多目标优化。研究建立了导湿纤维辅助 TIEC 的实验设施和理论模型。基于实验验证的数值模型和响应面方法(RSM),建立了冷却器性能预测的回归模型。选择了包括进气参数、运行参数和几何参数在内的八个输入参数,并选择了四个性能评价指标作为输出响应。分析了回归模型的参数敏感性。通过考虑输出响应的不同相对权重的影响,进行了多目标优化。此外,还对优化后的冷却器在不同气候区的应用性能进行了预测。结果表明,冷却器冷却后,产品空气温度下降可达到 8.8-11.3 °C。所建立的回归模型可以方便有效地预测导湿纤维辅助 TIEC 的性能,有望指导工程实践的设计和优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.30
自引率
12.80%
发文量
363
审稿时长
3.7 months
期刊介绍: The International Journal of Refrigeration is published for the International Institute of Refrigeration (IIR) by Elsevier. It is essential reading for all those wishing to keep abreast of research and industrial news in refrigeration, air conditioning and associated fields. This is particularly important in these times of rapid introduction of alternative refrigerants and the emergence of new technology. The journal has published special issues on alternative refrigerants and novel topics in the field of boiling, condensation, heat pumps, food refrigeration, carbon dioxide, ammonia, hydrocarbons, magnetic refrigeration at room temperature, sorptive cooling, phase change materials and slurries, ejector technology, compressors, and solar cooling. As well as original research papers the International Journal of Refrigeration also includes review articles, papers presented at IIR conferences, short reports and letters describing preliminary results and experimental details, and letters to the Editor on recent areas of discussion and controversy. Other features include forthcoming events, conference reports and book reviews. Papers are published in either English or French with the IIR news section in both languages.
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