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GIS assisted inverse geochemical modeling for plausible phase transfers in aquifers

机译:GIS辅助的反地球化学建模,用于含水层中可能的相转移

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A geographical information system (GIS) assisted approach that couples a groundwater flow model and an inverse geochemical model is presented to quantify the phase mole transfers between two points on the flow path within a groundwater system. It is used to investigate the plausible phase transfers in the unconfined aquifer of Mehsana district of Gujarat State, India. X-ray diffraction analysis of soil samples is carried out for mineral characterization. The groundwater flow field is simulated using MODFLOW and flow paths used for inverse geochemical modeling are traced using PMPATH, a particle tracking algorithm. The plausible phase mole transfers in the flow path are quantified using PHREEQC geochemical code. The different scenarios generated by inverse modeling routine are used as input to the geochemical model and simulation runs are taken as forward models. The obtained results are compared to the target solution chemistry by using the square of the Pearson product moment correlation coefficient. Results reveal that the groundwater is undersaturated with anhydrite, carbon dioxide (gas), fluorite, gypsum, halite, jarosite-K, and siderite. It is oversaturated with aragonite, calcite, dolomite, ferrihy-drite, goethite, and hematite. Results further reveal that calcite is precipitating, while dolomite, gypsum, carbon dioxide, and fluorite are dissolving together with ion exchange in the flow path.
机译:提出了一种结合了地下水流模型和逆地球化学模型的地理信息系统(GIS)辅助方法,以量化地下水系统内流动路径上两点之间的相摩尔转移。它用于调查印度古吉拉特邦Mehsana区无限制含水层中可能的相变。对土壤样品进行X射线衍射分析以鉴定矿物。使用MODFLOW来模拟地下水流场,并使用粒子跟踪算法PMPATH来跟踪用于反地球化学建模的流路。使用PHREEQC地球化学法定量分析流动路径中可能发生的相摩尔转移。反演例程生成的不同场景用作地球化学模型的输入,而模拟运行则作为正演模型。通过使用Pearson乘积矩相关系数的平方将获得的结果与目标溶液化学性质进行比较。结果表明,地下水中的硬石膏,二氧化碳(气体),萤石,石膏,岩盐,黄钾铁矾K和菱铁矿的饱和度不足。它被文石,方解石,白云石,亚铁酸盐,针铁矿和赤铁矿过饱和。结果进一步表明方解石正在沉淀,而白云石,石膏,二氧化碳和萤石则随着离子交换在流动路径中溶解。

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