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The concept of safe indoor air quality for the management of indoor environment in immune buildings.

机译:安全室内空气质量的概念,用于免疫建筑物的室内环境管理。

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摘要

When Hong Kong picked up its economy after World War II, acceptable indoor built environment has been the challenge to many of the building services engineers. In 1990s "Healthy Building" was put on the agenda in Hong Kong. Unfortunately, the outbreak of SARS and its high infectious rates in buildings shatters the arrogance of the engineers.;Professor Daniel W.T. Chan hypothesized the SARS virus was propagating through the drainage systems in high rise buildings and caused the vertical cluster infection in Block E of the Amoy Garden. The hypothesis was accepted in the report by World Health Organization after the investigation panel meeting on 30th April 2003.;This study identifies a bottle neck of the usual notion of "Healthy Building". The invulnerability of "healthy building" lies in its incapability of protection against infection. This thesis adds an important complement for the sake of optimizing the design of acceptable indoor built environment. The classic notion of 'healthy building' is first enhanced by a novel concept of 'Sustainable Immunized Building'. One of the features of this innovative approach is to provide a model for evaluation of relative protection against indoor cross infection in terms of reduction in probability through the enhancement of building and services system designs and operation.;After a comprehensive review of the available models describing probability of indoor airborne infection, the Wells-Riley model, in a modified form, is used as a base. Firstly, the hypothesis of SARS virus propagation through the drainage system was demonstrated by tracer gas investigation in a 37 storey high rise residential buildings. The relative risk of cross-infection via drainage system was estimated. Secondly, a comprehensive field investigation and computational fluid dynamic analysis was conducted on the natural ventilation performance of typical high rise apartments. Thirdly, a comprehensive model is developed to explain the filtration mechanism of window type air-conditioned units typically found in residential buildings in Hong Kong. Fourthly, a new protocol is proposed for household air cleaner performance evaluation.;The new "sustainable immunized building" concept perfects the notion of "healthy building" and provides a more valuable and pragmatic solution to protect building users.
机译:第二次世界大战后,香港经济复苏,可接受的室内建筑环境一直是许多建筑服务工程师所面临的挑战。在1990年代,“健康建筑”在香港被提上了议事日程。不幸的是,SARS的爆发及其在建筑物中的高传染率粉碎了工程师的傲慢。; Daniel WT Chan教授假设SARS病毒正在高层建筑的排水系统中传播,并导致了E楼的垂直簇感染。淘花园。在2003年4月30日的调查小组会议之后,世界卫生组织的报告接受了这一假设。该研究确定了“健康建筑”这一通常概念的瓶颈。 “健康建筑”的无懈可击之处在于它无法提供防感染保护。为了优化可接受的室内建筑环境设计,本论文增加了重要的补充。 “健康建筑”的经典概念首先通过“可持续免疫建筑”的新颖概念得到增强。这种创新方法的特征之一是,通过增强建筑和服务系统的设计和运行,提供一种用于评估相对防御措施来降低室内交叉感染的模型,以降低概率;室内空气传播感染的可能性,修改后的Wells-Riley模型用作基础。首先,SARS病毒通过排水系统传播的假说通过在37层高的高层住宅中进行的示踪气体调查得到了证明。估计了通过引流系统交叉感染的相对风险。其次,对典型高层公寓的自然通风性能进行了全面的现场调查和计算流体动力学分析。第三,建立了一个综合模型来解释通常在香港居民住宅中使用的窗式空调装置的过滤机理。第四,提出了一种新的家庭空气净化器性能评估协议。新的“可持续免疫建筑”概念完善了“健康建筑”的概念,为保护建筑使用者提供了更有价值和务实的解决方案。

著录项

  • 作者

    Law, Kai Chuen.;

  • 作者单位

    Hong Kong Polytechnic University (Hong Kong).;

  • 授予单位 Hong Kong Polytechnic University (Hong Kong).;
  • 学科 Engineering Architectural.;Engineering Sanitary and Municipal.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 469 p.
  • 总页数 469
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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