首页> 外文期刊>Geoscientific Model Development >Simulating coupled surface–subsurface flows with ParFlow v3.5.0: capabilities, applications, and ongoing development of an open-source, massively parallel, integrated hydrologic model
【24h】

Simulating coupled surface–subsurface flows with ParFlow v3.5.0: capabilities, applications, and ongoing development of an open-source, massively parallel, integrated hydrologic model

机译:使用Parflow v3.5.0模拟耦合表面地下流动:开源,大规模平行,集成水文模型的功能,应用和持续发展

获取原文
           

摘要

Surface flow and subsurface flow constitute a naturally linked hydrologic continuum that has not traditionally been simulated in an integrated fashion. Recognizing the interactions between these systems has encouraged the development of integrated hydrologic models (IHMs) capable of treating surface and subsurface systems as a single integrated resource. IHMs are dynamically evolving with improvements in technology, and the extent of their current capabilities are often only known to the developers and not general users. This article provides an overview of the core functionality, capability, applications, and ongoing development of one open-source IHM, ParFlow. ParFlow is a parallel, integrated, hydrologic model that simulates surface and subsurface flows. ParFlow solves the Richards equation for three-dimensional variably saturated groundwater flow and the two-dimensional kinematic wave approximation of the shallow water equations for overland flow. The model employs a conservative centered finite-difference scheme and a conservative finite-volume method for subsurface flow and transport, respectively. ParFlow uses multigrid-preconditioned Krylov and Newton–Krylov methods to solve the linear and nonlinear systems within each time step of the flow simulations. The code has demonstrated very efficient parallel solution capabilities. ParFlow has been coupled to geochemical reaction, land surface (e.g.,?the Common Land Model), and atmospheric models to study the interactions among the subsurface, land surface, and atmosphere systems across different spatial scales. This overview focuses on the current capabilities of the code, the core simulation engine, and the primary couplings of the subsurface model to other codes, taking a high-level perspective.
机译:表面流动和地下流动构成了一种自然连接的水文连续体,其传统上并未以综合方式模拟。认识到这些系统之间的相互作用鼓励了能够将表面和地下系统视为单一集成资源的综合水文模型(IHM)的开发。 IHMS正在动态地发展技术的改进,并且其当前功能的程度通常仅仅是开发人员而不是普通用户所知的。本文概述了一个开源IHM,Parflow的核心功能,能力,应用程序和持续开发的概述。 Parflow是一种并行,集成的水文模型,用于模拟表面和地下流动。 Parflow解决了三维可变饱和地下水流的理查兹方程,以及陆地流动浅水方程的二维运动波近似。该模型分别采用保守为中心的有限差分方案和用于地下流量和运输的保守有限体积法。 Parflow使用Multigrid-prectitioned Krylov和Newton-Krylov方法来解决流量模拟的每次步骤内的线性和非线性系统。该代码已经展示了非常有效的并行解决方案功能。 Parflow已经联系到地球化学反应,陆地表面(例如,α,常见的土地模型)和大气模型,以研究不同空间尺度的地下,陆地表面和大气系统之间的相互作用。此概述侧重于代码,核心仿真引擎和地下模型的主要耦合到其他代码的当前功能,采用高级视角。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号