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Experimental investigation of precooling desiccant-wheel air-conditioning system in a high-temperature and high-humidity environment

机译:高温高湿度环境中预冷干燥剂 - 轮空调系统的实验研究

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摘要

Desiccant-wheel air-conditioning systems driven by low-grade thermal energy have many advantages compared with traditional air-conditioning systems, including energy savings, comfort and environmental protection. Because of the insufficient dehumidification capacity of traditional air-conditioning systems, a precooling desiccant-wheel air-conditioning system that operates under high-temperature and high-humidity conditions was developed. To study the performance of the precooling desiccant-wheel air-conditioning system, experimental devices were built. The effects of the air parameters, regeneration temperature and water supply temperature on the performance of the precooling desiccant-wheel air-conditioning system were experimentally studied. The performance indices included the moisture removal capacity, dehumidification efficiency, refrigeration capacity, enthalpy efficiency and thermodynamic efficiency. The process air temperature, process air humidity ratio, regeneration temperature and water supply temperature had significant effects on the system's performance. When a renewable low-grade heat source was used, the energy consumption of the precooling desiccant-wheel air-conditioning system was reduced. This study provides guidance on the energy conservation design for precooling desiccant-wheel air-conditioning systems intended for use in high-temperature and high-humidity environments.
机译:与传统空调系统相比,低级热能驱动的干燥剂轮空调系统具有许多优点,包括节能,舒适和环保。由于传统空调系统的除湿能力不足,开发了一种在高温和高湿度条件下运行的预冷干燥剂轮空调系统。为研究预冷干燥剂轮空调系统的性能,建立了实验装置。实验研究了空气参数,再生温度和供水温度对预冷干燥剂轮空调系统的性能的影响。性能指标包括水分去除能力,除湿效率,制冷能力,焓效率和热力学效率。处理空气温度,工艺空气湿度比,再生温度和供水温度对系统的性能产生显着影响。当使用可再生低级热源时,降低了预冷干燥剂 - 轮空调系统的能量消耗。本研究为预防高温和高湿度环境中使用的预冷干燥剂轮空调系统的节能设计提供了指导。

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