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Simulating the effect of slab features on vapor intrusion of crack entry

机译:模拟板坯特征对裂缝入口蒸汽侵入的影响

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摘要

In vapor intrusion screening models, a most widely employed assumption in simulating the entry of contaminant into a building is that of a crack in the building foundation slab. Some modelers employed a perimeter crack hypothesis while others chose not to identify the crack type. However, few studies have systematically investigated the influence on vapor intrusion predictions of slab crack features, such as the shape and distribution of slab cracks and related to this overall building foundation footprint size. In this paper, predictions from a three-dimensional model of vapor intrusion are used to compare the contaminant mass flow rates into buildings with different foundation slab crack features. The simulations show that the contaminant mass flow rate into the building does not change much for different assumed slab crack shapes and locations, and the foundation footprint size does not play a significant role in determining contaminant mass flow rate through a unit area of crack. Moreover, the simulation helped reveal the distribution of subslab contaminant soil vapor concentration beneath the foundation, and the results suggest that in most cases involving no biodegradation, the variation in subslab concentration should not exceed an order of magnitude, and is often significantly less than this.
机译:在蒸气侵入筛选模型中,模拟污染物进入建筑物的最广泛采用的假设是建筑物基础板中存在裂缝。一些建模者采用了周边裂纹假设,而另一些建模者则选择不识别裂纹类型。但是,很少有研究系统地研究板坯裂缝特征(例如板坯裂缝的形状和分布)对蒸汽侵入预测的影响,并且与整个建筑基础占地面积大小有关。在本文中,利用三维蒸汽入侵模型进行的预测来比较进入具有不同基础平板裂缝特征的建筑物的污染物质量流量。模拟表明,对于不同的假定平板裂缝形状和位置,进入建筑物的污染物质量流量变化不大,并且基础覆盖区尺寸在确定通过裂缝单位面积的污染物质量流量方面不发挥重要作用。此外,该模拟有助于揭示地基下面的板下污染物土壤蒸汽浓度的分布,结果表明,在大多数不涉及生物降解的情况下,板下浓度的变化不应超过一个数量级,并且通常显着小于此数量级。 。

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