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Improving the performance of heat valve ventilation system: A study on the provided thermal environment

机译:改善热阀通风系统的性能:对提供的热环境的研究

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摘要

The current study presents and evaluates the performance of two types of supply air terminal devices applied in a heat valve ventilation (HVV) system with regard to the provided thermal environment in a room heated and ventilated by the HVV system. To that end, air temperature and air velocity patterns and local thermal discomfort due to draught were studied both experimentally and numerically. Using numerical simulations, parametric analysis was carried out for investigating the provided indoor thermal environment for a wider range of boundary conditions. The considered parameters included the influence of cold vertical surfaces, supply airflow rate and temperature, and room heating energy demand. The results showed that both of the applied air terminal devices could avoid temperature stratification within the occupied zone. The maximum air temperature difference between 0.1 and 1.8 m above the floor was 2.1 degrees C when using a circular valve placed in the external wall below the window and 2.6 degrees C in the case when the air was supplied through three nozzles located in the wall opposite to the window in the upper part of the room. In general, placing the air terminal device below the window provided more uniform air temperature distribution and contributed to the prevention of downdraught caused by a cold window surface. The outcomes of this study are relevant to selecting and designing ventilation and air heating systems for low-energy buildings.
机译:当前的研究针对由HVV系统加热和通风的房间中提供的热环境,介绍并评估了在热阀通风(HVV)系统中应用的两种类型的送风终端设备的性能。为此,通过实验和数值研究了空气温度和风速模式以及由于吃水引起的局部热不适。使用数值模拟,进行了参数分析,以研究为更大范围的边界条件提供的室内热环境。所考虑的参数包括冷垂直表面的影响,送风量和温度以及房间供暖能量需求。结果表明,两个应用的空气终端设备都可以避免在占用区域内发生温度分层。当使用放置在窗户下方外壁上的圆形阀时,地面以上0.1至1.8 m的最大空气温差为2.1摄氏度,而当空气通过位于对面墙壁上的三个喷嘴供气时,则为2.6摄氏度。到房间上部的窗户。通常,将空气终端设备放置在窗户下方可提供更均匀的空气温度分布,并有助于防止窗户表面过冷引起的下垂。这项研究的结果与选择和设计低能耗建筑的通风和空气加热系统有关。

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