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Recent Applications of Aerosol Sealing in Buildings

机译:气溶胶密封在建筑物中的最新应用

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摘要

This paper describes two recent applications of aerosol sealing techniques in buildings for improving indoor air quality and reducing energy required for heating, cooling, and ventilation. One application applies a commercially-available duct sealing technology, which has typically been used in single-family applications, to large-building exhaust systems. The initial leakage rates, percent leakage sealed, and issues encountered are presented for several large buildings. The reasons for having this leakage sealed arc presented, as are some of the techniques applied when conducting this type of sealing. The average duct leakage for these buildings was 28% of fan flow and the aerosol process sealed over 90% of that leakage. The second application is the use of aerosol sealing techniques for building envelope leaks. The process is similar to that used for scaling leaks in ducts; however it does not depend on injection of the sealant into a carrier flow to transport the sealant to the leaks, and therefore has to address the likelihood of particles settling to the ground, as well as the possibility of particles depositing on vertical surfaces. Laboratory tests investigating the impacts of pressure and particle size on the sealing process are described, as are the results of selected field tests showing how well the process performed when applied at two different stages of new multifamily construction. These tests suggest that the process should be able to achieve better levels of air tightness as compared to manual sealing methods, while including the added benefit of automated air-tightness verification.
机译:本文介绍了气溶胶密封技术在建筑物中的两种最新应用,以改善室内空气质量并减少供暖,制冷和通风所需的能量。一种应用将商用的管道密封技术应用于大型建筑物的排气系统,该技术通常已在单户应用中使用。介绍了几座大型建筑物的初始泄漏率,密封的泄漏百分比和遇到的问题。提出这种泄漏密封的原因是进行这种类型的密封时所采用的一些技术。这些建筑物的平均管道泄漏量为风机流量的28%,而气溶胶工艺密封了该泄漏量的90%以上。第二个应用是使用气溶胶密封技术来建造外壳泄漏。该过程类似于缩放管道泄漏的过程。然而,它不依赖于将密封剂注入载流中以将密封剂输送到泄漏处,因此必须解决颗粒沉降到地面的可能性以及颗粒沉积在垂直表面上的可能性。描述了调查压力和颗粒大小对密封过程影响的实验室测试,以及选定的现场测试结果,这些结果表明了在新的多户住宅建设的两个不同阶段应用该工艺的效果如何。这些测试表明,与手动密封方法相比,该工艺应能够达到更高的气密性水平,同时还包括自动气密性验证的其他优势。

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