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一种用于模拟具有反应的层流/非层流流动和污染物输运的 PHREEQC-2/平行裂缝模型。

A combined PHREEQC-2/parallel fracture model for the simulation of laminar/non-laminar flow and contaminant transport with reactions.

机构信息

Consiglio Nazionale delle Ricerche, Istituto di Ricerca Sulle Acque, Reparto di Chimica e Tecnologia delle Acque, via Francesco De Blasio 5, Bari, Italy.

出版信息

J Contam Hydrol. 2010 Sep 20;117(1-4):94-108. doi: 10.1016/j.jconhyd.2010.07.003. Epub 2010 Jul 24.

Abstract

A combination of a parallel fracture model with the PHREEQC-2 geochemical model was developed to simulate sequential flow and chemical transport with reactions in fractured media where both laminar and turbulent flows occur. The integration of non-laminar flow resistances in one model produced relevant effects on water flow velocities, thus improving model prediction capabilities on contaminant transport. The proposed conceptual model consists of 3D rock-blocks, separated by horizontal bedding plane fractures with variable apertures. Particle tracking solved the transport equations for conservative compounds and provided input for PHREEQC-2. For each cluster of contaminant pathways, PHREEQC-2 determined the concentration for mass-transfer, sorption/desorption, ion exchange, mineral dissolution/precipitation and biodegradation, under kinetically controlled reactive processes of equilibrated chemical species. Field tests have been performed for the code verification. As an example, the combined model has been applied to a contaminated fractured aquifer of southern Italy in order to simulate the phenol transport. The code correctly fitted the field available data and also predicted a possible rapid depletion of phenols as a result of an increased biodegradation rate induced by a simulated artificial injection of nitrates, upgradient to the sources.

摘要

开发了一种平行断裂模型与 PHREEQC-2 地球化学模型的组合,以模拟层流和湍流同时发生的断裂介质中的顺序流动和化学输运以及反应。在一个模型中整合非层流流动阻力对水流速度产生了相关影响,从而提高了对污染物输运的模型预测能力。所提出的概念模型由 3D 岩石块组成,由具有不同开度的水平层理面断裂分开。粒子跟踪法解决了保守化合物的输运方程,并为 PHREEQC-2 提供了输入。对于每一组污染物路径,PHREEQC-2 根据平衡化学物质的动力学控制反应过程,确定了传质、吸附/解吸、离子交换、矿物溶解/沉淀和生物降解的浓度。已经进行了现场测试以验证代码。例如,组合模型已应用于意大利南部受污染的断裂含水层,以模拟苯酚的输运。该代码正确拟合了现场可用数据,并且还预测了由于模拟人工注入硝酸盐引起的生物降解率增加,可能会导致苯酚迅速耗尽,硝酸盐在污染源的上游。

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