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Performance characteristics of domestic hybrid dehumidifier combined with solid desiccant rotor and vapor compression system

机译:结合固体除湿转子和蒸汽压缩系统的家用混合式除湿机的性能特点

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摘要

The performance of a domestic hybrid dehumidifier combined with a solid desiccant rotor and a vapor compression (VC) system is superior to that of the conventional VC and adsorption dehumidifier. In this study, the performance of a domestic hybrid dehumidifier was measured and analyzed by varying the room temperature, the rotating speed of the desiccant rotor, the bypass air-flow rate, and the power consumption of the heater. The specific moisture extraction rate (SMER) of the hybrid dehumidifier was 6.1-9.6% higher than that of the VC dehumidifier at the room temperatures ranging from 10 to 26.7 degrees C. In addition, the performance of the hybrid dehumidifier was optimized by varying the control parameters. The optimum rotating speeds of the desiccant rotor were 40 rph and 50 rph at room temperatures of 26.7 degrees C and 10 degrees C, respectively, for maximizing the SMER. The optimum bypass air-flow rate was 0.6 m(3) min(-1), which corresponded to a 6.2% improvement in the SMER at a temperature of 26.7 degrees C. The optimum power consumption of the heater under low room-temperature conditions was 0.15 kW. (C) 2017 Elsevier Ltd. All rights reserved.
机译:结合了固态干燥剂转子和蒸汽压缩(VC)系统的家用混合式除湿机的性能优于传统的VC和吸附式除湿机。在这项研究中,通过改变室温,干燥剂转子的转速,旁路空气流量和加热器的功耗来测量和分析家用混合式除湿机的性能。在10至26.7摄氏度的室温下,混合式除湿机的比湿率(SMER)比VC式除湿机高6.1-9.6%。此外,通过改变混合除湿机的性能,可以优化混合式除湿机的性能。控制参数。为了使SMER最大化,在26.7℃和10℃的室温下,干燥剂转子的最佳转速分别为40 rph和50 rph。最佳旁路空气流速为0.6 m(3)min(-1),相当于在26.7摄氏度的温度下SMER改善了6.2%。在低室温条件下加热器的最佳功耗是0.15千瓦。 (C)2017 Elsevier Ltd.保留所有权利。

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