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首页> 外文期刊>Journal of Hydrology >A two-dimensional analytical model for contaminant transport in a finite domain subjected to multiple arbitrary time-dependent point injection sources
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A two-dimensional analytical model for contaminant transport in a finite domain subjected to multiple arbitrary time-dependent point injection sources

机译:多个任意时间依赖点注射源的有限域中污染物运输的二维分析模型

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摘要

Predicting the fate and transport of contaminants in a subsurface environment is essential to the evaluation and remediation of soil and groundwater pollution. Point source models have been widely used to describe the accidental leakage of contaminants and the intended injection of chemicals, but previous researches are limited to a single source in an infinite/semi-finite domain with oversimplified injection types. Thus, this study establishes a two-dimensional analytical model for contaminant transport involving advection, dispersion, sorption and degradation in a finite domain with multiple arbitrary time-dependent point sources. Four representative time-dependent sources are applied to study the transport behavior of contaminants in a more realistic environment. Results reveal that assuming multiple sources as an equivalent-intensity single point source would significantly undervalue the polluted range by 17.7% in the early stage but overvalue the maximum downstream concentration, when the sources are spaced at an interval larger than 1 m. An infinite effluent boundary assumption would cause a noticeable deviation in the concentration near a real finite border, especially in a dispersion-dominated migration system. Moreover, a larger decay coefficient for decay injection will linearly reduce the area of contaminated region, while a larger injection rate for finite pulse injection will logarithmically expand the contaminated region. Thus, close attention should be paid to the time-dependent characteristics of point sources in practice to facilitate soil and groundwater remediation, and the present model is a promising tool to address this issue.
机译:预测污染物在地下环境中的去向和迁移对于评估和修复土壤和地下水污染至关重要。点源模型已被广泛用于描述污染物的意外泄漏和化学品的预期注入,但之前的研究仅限于无限/半有限域中的单一源,注入类型过于简单。因此,本研究建立了一个二维污染物传输分析模型,该模型涉及多个任意时间相关点源的有限域内的平流、扩散、吸附和降解。四个具有代表性的时间相关源被用于研究污染物在更现实的环境中的传输行为。结果表明,假设多个污染源作为一个等效强度的单点源,在早期阶段会显著低估污染范围17.7%,但会高估最大下游浓度,当源的间距大于1m时,无限流出物边界假设将导致实际有限边界附近的浓度出现明显偏差,尤其是在以分散为主的迁移系统中。此外,衰变注入的较大衰变系数将线性减少污染区域的面积,而有限脉冲注入的较大注入速率将对数扩展污染区域。因此,在实践中应密切关注点源的时间依赖性特征,以促进土壤和地下水的修复,目前的模型是解决这一问题的一个有希望的工具。

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