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一种用于在沉积地下模型中生成各向异性的开放的、基于对象的框架。

An Open, Object-Based Framework for Generating Anisotropy in Sedimentary Subsurface Models.

作者信息

Bennett Jeremy P, Haslauer Claus P, Ross Martin, Cirpka Olaf A

机构信息

Center for Applied Geosciences, University of Tübingen, Tübingen, Germany.

Department of Earth and Environmental Sciences, University of Waterloo, Waterloo, ON, Canada.

出版信息

Ground Water. 2019 May;57(3):420-429. doi: 10.1111/gwat.12803. Epub 2018 Jun 19.

Abstract

The spatial distribution of hydraulic properties in the subsurface controls groundwater flow and solute transport. However, many approaches to modeling these distributions do not produce geologically realistic results and/or do not model the anisotropy of hydraulic conductivity caused by bedding structures in sedimentary deposits. We have developed a flexible object-based package for simulating hydraulic properties in the subsurface-the Hydrogeological Virtual Realities (HyVR) simulation package. This implements a hierarchical modeling framework that takes into account geological rules about stratigraphic bounding surfaces and the geometry of specific sedimentary structures to generate realistic aquifer models, including full hydraulic-conductivity tensors. The HyVR simulation package can create outputs suitable for standard groundwater modeling tools (e.g., MODFLOW), is written in Python, an open-source programming language, and is openly available at an online repository. This paper presents an overview of the underlying modeling principles and computational methods, as well as an example simulation based on the Macrodispersion Experiment site in Columbus, Mississippi. Our simulation package can currently simulate porous media that mimic geological conceptual models in fluvial depositional environments, and that include fine-scale heterogeneity in distributed hydraulic parameter fields. The simulation results allow qualitative geological conceptual models to be converted into digital subsurface models that can be used in quantitative numerical flow-and-transport simulations, with the aim of improving our understanding of the influence of geological realism on groundwater flow and solute transport.

摘要

地下水力性质的空间分布控制着地下水流动和溶质运移。然而,许多模拟这些分布的方法并不能产生符合地质实际的结果,和/或无法模拟由沉积层中地层结构引起的水力传导率各向异性。我们开发了一个灵活的基于对象的软件包,用于模拟地下的水力性质——水文地质虚拟现实(HyVR)模拟软件包。该软件包实现了一个分层建模框架,该框架考虑了有关地层边界表面的地质规则以及特定沉积结构的几何形状,以生成逼真的含水层模型,包括完整的水力传导率张量。HyVR模拟软件包可以创建适用于标准地下水建模工具(例如MODFLOW)的输出,它是用开源编程语言Python编写的,并且可以在在线存储库中公开获取。本文概述了其基础建模原理和计算方法,以及基于密西西比州哥伦布市宏观弥散试验场地的一个模拟示例。我们的模拟软件包目前可以模拟模仿河流沉积环境中地质概念模型的多孔介质,并且这些多孔介质在分布式水力参数场中包含精细尺度的非均质性。模拟结果使定性的地质概念模型能够转换为数字地下模型,可用于定量数值水流和运移模拟,目的是增进我们对地质真实性对地下水流动和溶质运移影响的理解。

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