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首页> 外文期刊>Journal of the air & waste management association >Development And Application Of A Three-dimensional Finite Element Vapor Intrusion Model
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Development And Application Of A Three-dimensional Finite Element Vapor Intrusion Model

机译:三维有限元蒸汽入侵模型的开发与应用

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摘要

Details of a three-dimensional finite element model of soil vapor intrusion, including the overall modeling process and the stepwise approach, are provided. The model is a quantitative modeling tool that can help guide vapor intrusion characterization efforts. It solves the soil gas continuity equation coupled with the chemical transport equation, allowing for both advective and diffusive transport. Three-dimensional pressure, velocity, and chemical concentration fields are produced from the model. Results from simulations involving common site features, such as impervious surfaces, porous foundation sub-base material, and adjacent structures are summarized herein. The results suggest that site-specific features are important to consider when characterizing vapor intrusion risks. More importantly, the results suggest that soil gas or subslab gas samples taken without proper regard for particular site features may not be suitable for evaluating vapor intrusion risks; rather, careful attention needs to be given to the many factors that affect chemical transport into and around buildings.
机译:提供了土壤蒸汽入侵的三维有限元模型的详细信息,包括整体建模过程和逐步方法。该模型是一种定量建模工具,可以帮助指导气相侵入特征化工作。它解决了土壤气体连续性方程与化学迁移方程的耦合问题,允许对流和扩散迁移。从模型中产生三维压力,速度和化学浓度场。本文总结了涉及常见站点特征(例如不透水表面,多孔基础亚基底材料和相邻结构)的模拟结果。结果表明,在表征蒸气入侵风险时,必须考虑特定地点的特征。更重要的是,结果表明,在未适当考虑特定站点特征的情况下采集的土壤气体或地下气体样本可能不适合评估蒸汽入侵风险;相反,需要仔细注意影响化学物质进出建筑物和建筑物周围的许多因素。

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