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首页> 外文期刊>Building Services Engineering Research & Technology >The fieldwork and control engineering studies on thermal comfort of occupants in a conventional office building in the tropics
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The fieldwork and control engineering studies on thermal comfort of occupants in a conventional office building in the tropics

机译:热带地区常规办公楼中居住者的热舒适性的现场调查和控制工程研究

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摘要

This paper presents the fieldwork and the control system studies to examine and improve the thermal comfort of the occupants in a typical office building in Malaysia. The proposed control system works as the basis of adjusting the thermostat setting at a certain period of time with the degree of using the fuzzy logic. The thermostat of the central AC system has its set point fixed between 21? and 22?, slightly below the range of 23-26? as recommended by Malaysian Standard MS1525. In order to maintain the room comfort, the occupants choose to switch OFF the central AC system for a certain period of time before it is switched back ON. It has been repeated at least once per working days. Therefore, the proposed control system is designed to overcome this practice. Pre- and post-comfort surveys have been conducted where the thermal comfort level of the occupants throughout this study is investigated. The air temperature (T-a), globe temperature (T-g), air velocity (V) and relative humidity (RH) in the occupied area were data-logged for continuous five working days. These data are used to compute the operative temperature (T-op) before new thermostat set points are generated, which indicates possible adjustment from the recommended set-point (24?). The proposed thermostat setting has an error tolerance of 2.9% or less. As a result, the simulation results show an adjustment of the thermostat setting from 24? to 25.5?, which successfully maintained the room temperature of the main office between 23.3? and 25?. The relative humidity is maintained between 54.3% and 59.8%. Also, these outcomes have indirectly promoted an average increase of 22.6% in the thermal comfort satisfactory level of the occupants. Practical application: The new conclusions from the simplified thermostat control strategy, which can be customised according to the environment variables in the air-conditioned space (in this case the operative temperature and the relative humidity) or based on the preferences of the occupants, such as the level of thermal comfort that suits the current thermal environment in tropical climates, could be applied as an important guide for building services engineers and researchers. Their aims are to reduce energy usage in HVAC systems in the non-green office buildings in tropical climates while maintaining an adequate thermal comfort level, and thus, the performance and well-being of the office workers are improved.
机译:本文介绍了实地调查和控制系统研究,以检查和改善马来西亚一幢典型办公楼中居住者的热舒适性。所提出的控制系统作为使用模糊逻辑在一定时期内调节恒温器设置的基础。中央空调系统的温度调节器的设定点固定在21?和22 ?,略低于23-26?按照马来西亚标准MS1525的建议。为了保持室内舒适度,居住者选择先关闭中央空调系统一段时间,然后再重新打开。每个工作日至少重复一次。因此,提出的控制系统旨在克服这种做法。进行了舒适前后的调查,调查了整个研究过程中乘员的热舒适水平。连续五个工作日记录住区的气温(T-a),地球温度(T-g),风速(V)和相对湿度(RH)。这些数据用于在生成新的恒温器设定点之前计算工作温度(T-op),这表明可以从建议的设定点(24?)进行调整。建议的恒温器设置的误差容限为2.9%或更小。结果,模拟结果显示恒温器设置从24?调整。到25.5 ?,从而成功地将主办公室的室温保持在23.3?之间。和25?相对湿度保持在54.3%至59.8%之间。同样,这些结果间接促进了乘员的热舒适程度平均提高了22.6%。实际应用:简化的恒温器控制策略得出的新结论,可以根据空调空间中的环境变量(在这种情况下为工作温度和相对湿度)或根据乘员的偏好进行定制,例如作为适合热带气候当前热环境的热舒适水平,可以用作建筑服务工程师和研究人员的重要指南。他们的目标是减少热带气候中非绿色办公楼的HVAC系统中的能源消耗,同时保持适当的热舒适水平,从而改善上班族的性能和幸福感。

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