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The airborne transmission of infection between flats in high-rise residential buildings: A review

机译:高层住宅楼房间空气传播感染的研究进展

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摘要

The inter-flat airborne cross-transmission driven by single-sided natural ventilation has been identified recently in high-rise residential buildings, where most people live now in densely populated areas, and is one of the most complex and least understood transport routes. Given potential risks of infection during the outbreak of severe infectious diseases, the need for a full understanding of its mechanism and protective measures within the field of epidemiology and engineering becomes pressing. This review paper considers progress achieved in existing studies of the concerned issue regarding different research priorities. Considerable progress in observing and modeling the inter-flat transmission and dispersion under either buoyancy- or wind-dominated conditions has been made, while fully understanding the combined buoyancy and wind effects is not yet possible. Many methods, including on-site measurements, wind tunnel tests and numerical simulations, have contributed to the research development, despite some deficiencies of each method. Although the inter-flat transmission and dispersion characteristics can be demonstrated and quantified in a time-averaged sense to some extent, there are still unanswered questions at a fundamental level about transient dispersion process and thermal boundary conditions, calling for further studies with more advanced models for simulations and more sound experiments for validations.
机译:单侧自然通风驱动的扁平空气传播交叉传输最近在高层住宅建筑中得到了确认,那里的大多数人现在居住在人口稠密的地区,并且是最复杂,了解最少的运输路线之一。由于在严重传染病爆发期间存在潜在的感染风险,因此迫切需要在流行病学和工程学领域全面了解其机制和保护措施。这篇综述文章考虑了在有关不同研究重点的相关问题的现有研究中取得的进展。在浮力或风为主的条件下,对平面间的传输和弥散进行观测和建模已取得了相当大的进展,但尚不可能完全了解浮力和风的综合影响。尽管每种方法都有一些不足之处,但包括现场测量,风洞测试和数值模拟在内的许多方法仍为研究发展做出了贡献。尽管可以在时间平均的意义上证明并量化平面间的传输和弥散特性,但在基本层面上仍存在关于瞬态弥散过程和热边界条件的未解决问题,需要使用更高级的模型进行进一步研究用于仿真,更多声音实验用于验证。

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