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用于综合地下水建模的实时交互式导向环境。

A real-time, interactive steering environment for integrated ground water modeling.

作者信息

Li Shu-Guang, Liu Qun

机构信息

Department of Civil and Environmental Engineering, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Ground Water. 2006 Sep-Oct;44(5):758-63. doi: 10.1111/j.1745-6584.2006.00225.x.

Abstract

We present in this note an innovative software environment, called Interactive Ground Water (IGW), for unified deterministic and stochastic ground water modeling. Based on efficient computational algorithms, IGW allows simulating three-dimensional (3D) unsteady flow and transport in saturated media subject to systematic and "random" stresses and geological and chemical heterogeneity. Adopting a new computing paradigm, IGW eliminates the fragmentation in the traditional modeling schemes and allows fully utilizing today's dramatically increased computing power. For many problems, IGW enables real-time modeling, visualization, mapping, and analysis. The software environment functions as a "numerical laboratory" in which an investigator may freely explore the following: creating visually an aquifer system of desired configurations, interactively applying stresses and boundary conditions, and then investigating and visualizing on the fly the geology and flow and transport dynamics. At any time, a researcher can pause to interact dynamically with virtually any aspects of the modeling process and then resume the integrated visual exploration; he or she can initiate, pause, or resume particle tracking, plume modeling, subscale modeling, stochastic modeling, monitoring, and budget analyses. IGW continually provides results that are dynamically processed, overlaid, and displayed. It dynamically merges modeling inputs and outputs into composite two-dimensional/3D images-integrating related data to provide a more complete view of the complex interplay among the geology, hydrology, flow system, and transport. These unique capabilities of real-time modeling, steering, analysis, and mapping expand the utility of models as tools for research, education, and professional investigations.

摘要

在本报告中,我们介绍了一种名为交互式地下水(IGW)的创新软件环境,用于统一确定性和随机地下水建模。基于高效的计算算法,IGW允许模拟饱和介质中受系统和“随机”应力以及地质和化学非均质性影响的三维(3D)非稳定流和运移。采用新的计算范式,IGW消除了传统建模方案中的碎片化问题,并允许充分利用当今大幅增加的计算能力。对于许多问题,IGW能够实现实时建模、可视化、绘图和分析。该软件环境充当一个“数值实验室”,研究人员可以在其中自由探索以下内容:直观地创建所需配置的含水层系统,交互式地施加应力和边界条件,然后即时研究和可视化地质以及水流和运移动力学。在任何时候,研究人员都可以暂停,与建模过程的几乎任何方面进行动态交互,然后恢复集成的可视化探索;他或她可以启动、暂停或恢复粒子追踪、羽流建模、亚尺度建模、随机建模、监测和预算分析。IGW持续提供经过动态处理、叠加和显示的结果。它将建模输入和输出动态合并为复合二维/3D图像,整合相关数据,以更全面地展示地质、水文、水流系统和运移之间复杂的相互作用。这些实时建模、操控、分析和绘图的独特功能扩展了模型作为研究、教育和专业调查工具的效用。

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