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排水管道蒸汽侵入路径对底板减压系统缓解性能的影响。

Impact of drainage pipe vapor intrusion pathways on sub-slab depressurization system mitigation performance.

作者信息

Ding Ning, Hou Chenglin, Li Hongrui, Chen Haoming, Dahlen Paul, Johnson Paul C, Yao Yijun, Guo Yuanming

机构信息

School of Environment and Biological Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.

Norendar International LTD, Shijiazhuang 050000, China.

出版信息

J Hazard Mater. 2024 Dec 5;480:136277. doi: 10.1016/j.jhazmat.2024.136277. Epub 2024 Oct 23.

Abstract

Sub-slab depressurization (SSD) systems are the most commonly employed technology for mitigating vapor intrusion (VI) impact to indoor air. However, as cases involving preferential VI pathways (e.g. sewers, land drains) are being reported, the efficacy of SSD systems to reduce VI impacts from such pathways is being questioned. In this study, field test and numerical modeling were performed to evaluate the effectiveness of an SSD system for the case of VI involving a drainage pipe preferential pathway. Field tests investigated the SSD performance at the study house under conditions with and without the impact of a drainage pipe pathway. A numerical model was developed to explore the influence of the preferential pathway on SSD mitigation under different scenarios. Both field and simulation results indicated that the sub-slab drainage system inhibits the performance of the SSD, consequently requiring a greater level of flow and depressurization for the system to protect the building. In addition, the SSD caused higher sub-slab vapor concentrations than under natural condition in both field testing and simulation results, which raised concerns for potential VI risk under standard SSD operation. Moreover, simulation results suggested the location of preferential pathways can affect the performance of an SSD system.

摘要

地板下减压(SSD)系统是减轻蒸汽侵入(VI)对室内空气影响最常用的技术。然而,随着涉及优先VI路径(如下水道、地面排水)的案例不断被报道,SSD系统减少此类路径VI影响的效果受到质疑。在本研究中,进行了现场测试和数值模拟,以评估SSD系统在涉及排水管道优先路径的VI情况下的有效性。现场测试研究了在有和没有排水管道路径影响的条件下,研究房屋内SSD的性能。开发了一个数值模型,以探索优先路径在不同场景下对SSD缓解效果的影响。现场和模拟结果均表明,地板下排水系统会抑制SSD的性能,因此需要更高的流量和减压水平才能使系统保护建筑物。此外,在现场测试和模拟结果中,SSD导致的地板下蒸汽浓度均高于自然条件下的浓度,这引发了对标准SSD运行下潜在VI风险的担忧。此外,模拟结果表明优先路径的位置会影响SSD系统的性能。

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