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Evaluation of the indoor pressure distribution during building airtightness tests using the pulse and blower door methods

机译:使用脉冲和鼓风机门方法建立气密测试过程中室内压力分布的评价

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Building airtightness is a critical aspect for energy-efficient buildings as the energy performance of a building can be significantly reduced by poor airtightness. The Pulse technique has been regarded as a promising technology, measuring building airtightness at a low pressure of 4 Pa. However, due to the rapid dynamic nature of the test, a frequently raised question concerns the uniformity of the pressure distribution across the internal space of the test building during the air pulse release. In order to investigate this point, experimental work was conducted in a five-bedroom dwelling. All the tests were conducted at wind speeds less than 0.45 m/s to minimise the wind impact on the indoor pressure. The results show a pressure difference within the building during the Pulse test does exist, but considering the accuracy of differential pressure transducers, the deviation is not significant. In addition, a subtle variation is noted when the Pulse test was conducted at different locations on the ground floor, which may also be caused by variations in the environmental conditions. In terms of the airtightness measurement, a good overall agreement was found between the Pulse technique and the conventional blower door fan pressurisation method, which indirectly verified the uniformity of the indoor pressure distribution during both tests. Moreover, the error analysis demonstrated the validity of the measurement results for the two test methods in this study.
机译:建筑气密性是节能建筑作为建筑的节能性能的一个重要方面可以通过气密性较差被显著减少。脉冲技术已被视为有前途的技术,在4 Pa的低压测量建筑物的气密性。然而,由于测试的快速动态特性,跨越的内部空间中的压力分布的一个经常提出的问题的担忧的均匀性测试中的空气脉冲释放期间建立。为了调查这一点上,试点工作在五间卧室的住宅中进行。所有的测试在风速超过0.45米进行了更少/秒,以减低对室内压力的风的影响。结果表明,在脉冲测试期间,建筑物内的压力差确实存在,但考虑到差压变送器的精度,偏差不显著。此外,当脉冲测试在地面层不同的位置,其也可以通过在环境条件的变化引起的被进行了细微的变化被注意到。在气密性的测量而言,良好的整体协议的脉冲技术和传统的送风装置的风扇门加压的方法,这两种测试在这期间间接验证室内压力分布的均匀性之间找到。此外,错误分析证明的测定结果在本研究中两种试验方法的有效性。

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