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一种用于模拟无压含水层中多物种反应输运的耦合水流与输运模型,采用无网格局部彼得罗夫-伽辽金(MLPG)方法。

A coupled flow and transport model for simulation of multi-species reactive transport in unconfined aquifer using meshless local Petrov Galerkin (MLPG) method.

作者信息

Das Sanjukta, Eldho T I

机构信息

Department of Civil Engineering, Indian Institute of Technology Bombay, Mumbai, 400076, Maharashtra, India.

出版信息

Environ Sci Pollut Res Int. 2023 Oct;30(48):105556-105574. doi: 10.1007/s11356-023-29664-6. Epub 2023 Sep 16.

Abstract

An understanding of natural degradation of multiple reactive contaminants in the aquifers is essential before designing the monitoring or remediation programs for polluted aquifers. Since such reactive contaminants are ubiquitous, a number of research works has been performed in the past three decades for the modelling of multi-species reactive transport (MSRT) phenomenon. The widely used finite difference method (FDM) and finite element method (FEM)-based models suffer a drawback of relying on a grid/mesh, which makes the solution unstable. Addressing such difficulties, the latest research on the MSRT models is directed towards the meshless methods. In this study, the meshless local Petrov Galerkin (MLPG) method-based multi-species reactive transport model (MLPG-MSRT) is presented, with an objective to create a robust simulation tool for the prediction of fate of multiple contaminants of the first-order reaction network. The developed model is validated for reversible as well as irreversible reaction networks with the available analytical solutions. Also, the MLPG model for unconfined aquifer flow (UF) is developed, validated, and coupled with the MLPG-MSRT model. The MLPG-UF-MSRT model results are further compared with the established FDM-based MODFLOW-RT3D model solutions for a rectangular and a real field type study. The results showed that the proposed model can simulate MSRT as accurately as the FDM-based models with an additional advantage of simplicity and stability, and thus, is more efficient for complex field problems.

摘要

在设计受污染含水层的监测或修复方案之前,了解含水层中多种反应性污染物的自然降解情况至关重要。由于此类反应性污染物普遍存在,在过去三十年中已经开展了许多研究工作来模拟多物种反应输运(MSRT)现象。广泛使用的基于有限差分法(FDM)和有限元法(FEM)的模型存在依赖网格的缺点,这使得求解不稳定。为了解决这些困难,MSRT模型的最新研究方向是无网格方法。在本研究中,提出了基于无网格局部彼得罗夫伽辽金(MLPG)方法的多物种反应输运模型(MLPG-MSRT),目的是创建一个强大的模拟工具,用于预测一级反应网络中多种污染物的归宿。利用现有的解析解,对所开发的模型在可逆和不可逆反应网络方面进行了验证。此外,还开发、验证了无压含水层流动(UF)的MLPG模型,并将其与MLPG-MSRT模型耦合。针对矩形和实际场地类型的研究,将MLPG-UF-MSRT模型的结果与已建立的基于FDM的MODFLOW-RT3D模型的解进行了进一步比较。结果表明,所提出的模型能够与基于FDM的模型一样准确地模拟MSRT,并且具有简单性和稳定性的额外优势,因此对于复杂的场地问题更有效。

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