Modeling vapor intrusion processes and evaluating risks using subslab data

E. Suuberg, Yijun Yao, Rui Shen, Ozgur Bozkurt, K. Pennell
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引用次数: 6

Abstract

This paper considers the significance of observed subslab contaminant concentrations on the vapor intrusion process. In field measurements, there is observed wide variability in the ratio of indoor air contaminant concentration to subslab contaminant concentration. Here various aspects of the relationship of subslab concentrations to indoor contaminant levels are explored using a threedimensional fluid dynamics model of the process. Subslab concentrations are determined mainly by diffusional processes and they are reasonably uniform across the subslab for buildings on homogeneous soils (with no significant advective subsurface disturbance). Also, subslab concentrations do not determine the main mode of contaminant entry into a structure (advection or diffusion), and widely different contaminant entry rates can be obtained with very similar subslab concentrations, depending upon whether the soil type supports advection or not.
利用底板数据模拟蒸汽侵入过程并评估风险
本文考虑了观察到的板下污染物浓度对蒸汽侵入过程的意义。在现场测量中,观察到室内空气污染物浓度与底板污染物浓度之比有很大的变化。在这里,使用该过程的三维流体动力学模型探讨了底板浓度与室内污染物水平关系的各个方面。下板浓度主要由扩散过程决定,对于均匀土壤上的建筑物,它们在下板上是相当均匀的(没有明显的平流地下扰动)。此外,板下浓度不能决定污染物进入结构的主要方式(平流或扩散),并且在非常相似的板下浓度下,根据土壤类型是否支持平流,可以获得截然不同的污染物进入率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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