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Comparison between PVI2D and Abreu–Johnson’s Model for Petroleum Vapor Intrusion Assessment

机译:PVI2D与Abreu-Johnson的石油蒸汽入侵评估模型之间的比较

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摘要

Recently, we have developed a two-dimensional analytical petroleum vapor intrusion model, PVI2D (petroleum vapor intrusion, two-dimensional), which can help users to easily visualize soil gas concentration profiles and indoor concentrations as a function of site-specific conditions such as source strength and depth, reaction rate constant, soil characteristics, and building features. In this study, we made a full comparison of the results returned by PVI2D and those obtained using Abreu and Johnson’s three-dimensional numerical model (AJM). These comparisons, examined as a function of the source strength, source depth, and reaction rate constant, show that PVI2D can provide similar soil gas concentration profiles and source-to-indoor air attenuation factors (within one order of magnitude difference) as those by the AJM. The differences between the two models can be ascribed to some simplifying assumptions used in PVI2D and to some numerical limitations of the AJM in simulating strictly piecewise aerobic biodegradation and no-flux boundary conditions. Overall, the obtained results show that for cases involving homogenous source and soil, PVI2D can represent a valid alternative to more rigorous three-dimensional numerical models.
机译:最近,我们开发了二维分析石油蒸汽入侵模型PVI2D(石油蒸汽入侵,二维),该模型可以帮助用户轻松地根据特定地点条件(例如,源强度和深度,反应速率常数,土壤特性和建筑物特性。在这项研究中,我们对PVI2D返回的结果与使用Abreu和Johnson的三维数值模型(AJM)获得的结果进行了完全比较。根据气源强度,气源深度和反应速率常数的函数进行的这些比较表明,PVI2D可提供与土壤气浓度曲线和气源至室内空气衰减因子(在一个数量级差之内)相似的土壤气体浓度曲线和AJM。两种模型之间的差异可以归因于在PVI2D中使用的一些简化假设,以及在模拟严格的分段好氧生物降解和无通量边界条件时AJM的一些数值限制。总的来说,获得的结果表明,对于涉及均质源和土壤的情况,PVI2D可以替代更严格的三维数值模型。

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