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Effects of compressor frequency and heat exchanger geometry on dynamic performance characteristics of heat pump dryers

机译:压缩机频率和热交换器几何对热泵干燥器动态性能特性的影响

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摘要

A heat pump dryer (HPD) exhibits significant transient behaviors owing to the combined system of the heat pump cycle and closed-loop air cycle. However, a complete transient simulation for HPDs has not been yet developed owing to its complicated equations and lack of experimental data. In this study, a complete transient simulation of an HPD was developed using the finite volume method and was validated with experimental data, presenting validation errors less than 6.1%. Using the developed simulation model, the dynamic behavior and performance of the HPD were analyzed by varying operation modes and heat exchanger length. The operation mode with a higher compressor frequency showed a 16.5% higher moisture extraction rate (MER) due to the decreased drying time, whereas that with a lower frequency showed a 34.8% higher specific moisture extraction rate (SMER) due to the decreased energy consumption. As the heat exchanger length increased from 80% to 120%, the MER increased by 10% and the SMER increased by 14%. Additionally, as the compressor frequency increased, the optimum heat exchanger length for achieving maximum performance increased. In conclusion, the compressor control logic and heat exchanger length should be optimized according to the drying time, power consumption, and initial cost. (c) 2021 Elsevier Ltd. All rights reserved.
机译:由于热泵循环和闭环空气循环的组合系统,热泵干燥器(HPD)表现出显着的瞬态行为。然而,由于其复杂的方程和缺乏实验数据,尚未开发完整的HPD瞬态仿真。在这项研究中,使用有限体积法开发了HPD的完全瞬态仿真,并用实验数据验证,呈现验证误差小于6.1%。使用开发的仿真模型,通过不同的操作模式和热交换器长度分析了HPD的动态行为和性能。具有较高压缩机频率的操作模式显示出由于干燥时间降低而较高的水分提取率(MER),而较低频率的测量率较高显示出较高的特定水分提取率(SMER),由于能量消耗降低,较高。随着热交换器长度从80%增加到120%,MER增加了10%,SMER增加了14%。另外,随着压缩机频率的增加,用于实现最大性能的最佳热交换器长度增加。总之,压缩机控制逻辑和热交换器长度应根据干燥时间,功耗和初始成本进行优化。 (c)2021 elestvier有限公司保留所有权利。

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