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Numerical analysis of the performance characteristics and optimal design of a plastic rotary regenerator considering leakage and adsorption

机译:考虑泄漏和吸附的塑料旋转蓄热室性能特征数值分析与优化设计

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摘要

The heat and water vapor transfer characteristics of a rotary regenerator are important factors for improving the cooling and dehumidifying performance of a desiccant air-conditioning system. The objective of this study is to optimize the design parameters of a plastic rotary regenerator. A numerical model was developed and validated to predict the performance of a plastic rotary regenerator considering leakage and adsorption. The effects of the rotating speed, split, aspect ratio, and purge section angle on the heat and water vapor transfer effectiveness were analyzed using the numerical model. The optimum rotating speed, split, aspect ratio, and purge section angle in the plastic rotary regenerator were determined to be 8 rpm, 0.55, 0.35, and 4 degrees, respectively. The maximized heat transfer effectiveness and the minimized water vapor transfer effectiveness with use of the optimal design were 0.85 and 0.042, respectively, which yielded a 39.6% improvement in the water vapor transfer effectiveness compared to that with use of the basic design. (C) 2016 Elsevier Ltd. All rights reserved.
机译:旋转式蓄冷器的热和水蒸气传递特性是改善干燥剂空调系统的冷却和除湿性能的重要因素。这项研究的目的是优化塑料旋转蓄热器的设计参数。开发并验证了一个数值模型,以预测考虑泄漏和吸附的塑料旋转蓄热室的性能。使用数值模型分析了转速,分流比,纵横比和吹扫截面角对热和水蒸气传递效率的影响。确定塑料旋转蓄热室中的最佳转速,分流比,纵横比和吹扫截面角分别为8 rpm,0.55、0.35和4度。使用最佳设计的最大传热效率和最小的水蒸气传递效率分别为0.85和0.042,与使用基本设计相比,水蒸气传递效率提高了39.6%。 (C)2016 Elsevier Ltd.保留所有权利。

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