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Experimental study on tracer gas method for building infiltration rate measurement

机译:用于建筑渗透速率测量的示踪气体方法的实验研究

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The use of occupant-exhaled CO_(2)as the tracer gas enables the actual indoor infiltration rate to be measured, but the number and location of measuring points have a great impact on the accuracy of the results. This paper compares the experimental results from two tracer gas measurement techniques, decay with SF_(6)and constant injection with CO_(2)(exhaled by occupant). The results show a deviation of –9.0 to 7.4% between these two methods. This paper compares the result of this study with previous ones, and it confirmed that the CO_(2)method is an effective technique to calculate the infiltration rate in a room with a certain air volume when one measuring point is provided, and this is more accurate with good mixing of the indoor air. The impact of the measurement duration and distribution of indoor air on the measurement accuracy are also analysed. It is found that an extended monitoring period can reduce the impact of indoor air distribution. In actual measurements in residential building, it is recommended to select the data after occupants have been in the room for half an hour and to take measurements over 1 h after that. Practical application : Accurate air change per hour (ACH) is beneficial to the study of building energy consumption and indoor air quality. This paper explores the effectiveness of CO_(2)method, which provides useful reference for the large sample measurements of infiltration rates in residential buildings.
机译:随着示踪气体的乘员呼出的CO_(2)可以使用实际的室内渗透速率,但测量点的数量和位置对结果的准确性产生了很大的影响。本文比较了两种示踪气体测量技术的实验结果,用SF_(6)衰减并与CO_(2)恒定注射(由乘员呼出)。结果显示这两种方法之间的偏差为-9.0至7.4%。本文将该研究与先前研究的结果进行了比较,确认CO_(2)方法是在提供一个测量点时计算具有特定空气量的房间中的渗透率的有效技术,这是更多的精确混合室内空气。还分析了测量持续时间和室内空气分布对测量精度的影响。结果发现,扩展的监测期可以降低室内空气分布的影响。在住宅建筑的实际测量中,建议在乘员在房间持续半小时后选择数据,并在此之后超过1小时进行测量。实际应用:每小时准确的空气变化(ACH)有利于研究能源消耗和室内空气质量的研究。本文探讨了CO_(2)方法的有效性,它为住宅建筑中渗透率的大型样本测量提供了有用的参考。

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