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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >The development and experimental performance evaluation on a novel household variable refrigerant flow based temperature humidity independently controlled radiant air conditioning system
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The development and experimental performance evaluation on a novel household variable refrigerant flow based temperature humidity independently controlled radiant air conditioning system

机译:新型家用可变制冷剂流动温湿度的开发与实验性能评价独立控制辐射空调系统

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摘要

The present temperature humidity independent control (THIC) air conditioning (A/C) systems are not that applicable in small-to-medium scaled residential and office buildings for their complex configuration and additional requirement of regenerating heat. In this paper, a novel house-hold VRF based radiant A/C system adopting outdoor air dehumidifier (OAD) was developed and experimentally tested. This novel system employed the VRF system, applying one refrigerant cycle to the OAD to cooling and dehumidifying the outdoor air and another to the Refrigerant-Water plate heat exchanger (RWPHE) to providing chilled water for the adopted radiant terminals. Therefore, the supplying outdoor air from the OAD handled the indoor latent cooling load and the radiant terminals the indoor sensible load, so as to realize the independent control of indoor air temperature and humidity. Experiments were carried out at different outdoor air states for examining the performance of this novel THIC system. The experimental results showed that the supply air temperatures were controlled at proper levels with a moderate fluctuation below 2 degrees C and the supply air humidity ratios were within 8-10 g/kg, meeting the requirement of ASHRAE's recommendation. Therefore, the results suggested promising performance of the developed system in temperature and humidity control. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本温湿度独立控制(THIC)空调(A / C)系统不是适用于小于介质鳞片住宅和办公楼,用于复杂的配置和再生热的额外要求。本文开发了一种采用室外空气除湿机(OAD)的新型房屋举行的VRF基于辐射A / C系统并进行了实验测试。该新颖系统采用VRF系统,将一个制冷剂循环施加到OAD中以冷却和除湿室外空气,另一个用于制冷剂 - 水板热交换器(RWphe),以为所采用的辐射终端提供冷却的水。因此,从OAD供应室外空气处理室内潜冷负载和辐射端子的室内明智的载荷,以实现室内空气温度和湿度的独立控制。在不同的户外航空状态下进行实验,用于检查该新型系统的性能。实验结果表明,供应空气温度以低于2摄氏度的适当水平控制,供应空气湿度比在8-10克/千克内,满足Ashrae推荐的要求。因此,结果表明了发达系统在温度和湿度控制中的有希望的性能。 (c)2017 Elsevier Ltd.保留所有权利。

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