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Thermal, ventilation and energy saving performance evaluations of a ductless bed-based task/ambient air conditioning (TAC) system

机译:基于无管床的任务/环境空调(TAC)系统的热,通风和节能性能评估

摘要

To provide better indoor thermal comfort and indoor air quality in sleeping environments and to achieve greater energy saving, it is necessary to develop new air conditioning systems applied to sleeping environments. In recent years, a large number of studies have been carried out on the task/ambient air conditioning (TAC). To address a number of the inadequacies in a previous related study for a novel bed-based TAC system for sleeping environments, a ductless bed-based TAC system has been developed and its thermal, ventilation and energy saving performances have been experimentally evaluated, by comparing them with those of a full volume air conditioning (FAC) system. Firstly, an experimental setup at two different settings, a ductless bed-based TAC setting and a FAC setting, is presented. Secondly, the methods for measuring air dry-bulb and wet-bulb temperatures, air velocity and CO2 concentrations are reported and six groups of experimental conditions detailed. Finally, experimental results of thermal, ventilation and energy saving performances at the two settings are presented and analyzed. The experimental results demonstrated that using the ductless bed-based TAC could lead to a better ventilation performance and energy saving performance, but a poor thermal performance in terms of a higher draft risk than using the FAC system. It was possible to reduce the draft risk, while still maintaining an acceptable energy saving performance, by selecting a proper supply air temperature and air flow rate as well as a proper supply vane angle.
机译:为了在睡眠环境中提供更好的室内热舒适度和室内空气质量并实现更大的节能效果,有必要开发适用于睡眠环境的新型空调系统。近年来,对任务/环境空调(TAC)进行了大量研究。为了解决先前在有关睡眠环境的新型基于床的TAC系统的相关研究中的许多不足之处,已经开发出了基于无管床的TAC系统,并通过比较进行了实验评估其热,通风和节能性能它们配备了全容积空调(FAC)系统。首先,介绍了两种不同设置的实验设置,即基于无管床的TAC设置和FAC设置。其次,报告了测量干球和湿球温度,空气速度和CO2浓度的方法,并详细介绍了六组实验条件。最后,介绍并分析了两种设置下的热,通风和节能性能的实验结果。实验结果表明,与使用FAC系统相比,使用基于无管床的TAC可以带来更好的通风性能和节能性能,但散热性能不佳,因为吃水风险更高。通过选择合适的送风温度和空气流量以及合适的送风叶片角度,可以降低通风风险,同时仍保持可接受的节能性能。

著录项

  • 作者

    Mao N; Pan D; Deng S; Chan M;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:56:16

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