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首页> 外文期刊>Hydrology and Earth System Sciences >Sequential and joint hydrogeophysical inversion using a field-scale groundwater model with ERT and TDEM data
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Sequential and joint hydrogeophysical inversion using a field-scale groundwater model with ERT and TDEM data

机译:使用具有ERT和TDEM数据的田间规模地下水模型进行的顺序和联合水文地球物理反演

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摘要

Increasingly, ground-based and airborne geophysical data sets are used to inform groundwater models. Recent research focuses on establishing coupling relationships between geophysical and groundwater parameters. To fully exploit such information, this paper presents and compares different hydrogeophysical inversion approaches to inform a field-scale groundwater model with time domain electromagnetic (TDEM) and electrical resistivity tomography (ERT) data. In a sequential hydrogeophysical inversion (SHI) a groundwater model is calibrated with geophysical data by coupling groundwater model parameters with the inverted geophysical models. We subsequently compare the SHI with a joint hydrogeophysical inversion (JHI). In the JHI, a geophysical model is simultaneously inverted with a groundwater model by coupling the groundwater and geophysical parameters to explicitly account for an established petrophysical relationship and its accuracy. Simulations for a synthetic groundwater model and TDEM data showed improved estimates for groundwater model parameters that were coupled to relatively well-resolved geophysical parameters when employing a high-quality petrophysical relationship. Compared to a SHI these improvements were insignificant and geophysical parameter estimates became slightly worse. When employing a low-quality petrophysical relationship, groundwater model parameters improved less for both the SHI and JHI, where the SHI performed relatively better. When comparing a SHI and JHI for a real-world groundwater model and ERT data, differences in parameter estimates were small. For both cases investigated in this paper, the SHI seems favorable, taking into account parameter error, data fit and the complexity of implementing a JHI in combination with its larger computational burden.
机译:越来越多地使用地面和空中地球物理数据集来指导地下水模型。最近的研究集中在建立地球物理参数和地下水参数之间的耦合关系。为了充分利用这些信息,本文提出并比较了不同的水文地球物理反演方法,以利用时域电磁(TDEM)和电阻率层析成像(ERT)数据为油田规模的地下水模型提供信息。在连续的水文地球物理反演(SHI)中,通过将地下水模型参数与反演的地球物理模型耦合,利用地球物理数据对地下水模型进行校准。我们随后将SHI与联合水文地球物理反演(JHI)进行了比较。在JHI中,通过耦合地下水和地球物理参数来明确考虑已建立的岩石物理关系及其准确性,从而将地球物理模型与地下水模型同时反转。对合成地下水模型和TDEM数据进行的仿真显示,采用高质量的岩石物理关系时,对地下水模型参数的估计值得到了改进,这些估计值与解析度相对较高的地球物理参数相关。与SHI相比,这些改进微不足道,地球物理参数估计值略有恶化。当采用低质量的岩石物理关系时,SHI和JHI的地下水模型参数改善较少,而SHI的表现相对较好。在比较真实地下水模型和ERT数据的SHI和JHI时,参数估计的差异很小。对于本文研究的两种情况,考虑到参数错误,数据拟合以及实现JHI的复杂性及其较大的计算负担,SHI似乎都是有利的。

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