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首页> 外文期刊>Earth Surface Dynamics Discussions >Creative computing with Landlab: an open-source toolkit for building, coupling, and exploring two-dimensional numerical models of Earth-surface dynamics
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Creative computing with Landlab: an open-source toolkit for building, coupling, and exploring two-dimensional numerical models of Earth-surface dynamics

机译:使用Landlab进行创意计算:用于构建,耦合和探索地表动力学二维数值模型的开源工具包

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The ability to model surface processes and to couple them to both subsurface and atmospheric regimes has proven invaluable to research in the Earth and planetary sciences. However, creating a new model typically demands a very large investment of time, and modifying an existing model to address a new problem typically means the new work is constrained to its detriment by model adaptations for a different problem. Landlab is an open-source software framework explicitly designed to accelerate the development of new process models by providing (1) a set of tools and existing grid structures – including both regular and irregular grids – to make it faster and easier to develop new process components, or numerical implementations of physical processes; (2) a suite of stable, modular, and interoperable process components that can be combined to create an integrated model; and (3) a set of tools for data input, output, manipulation, and visualization. A set of example models built with these components is also provided. Landlab's structure makes it ideal not only for fully developed modelling applications but also for model prototyping and classroom use. Because of its modular nature, it can also act as a platform for model intercomparison and epistemic uncertainty and sensitivity analyses. Landlab exposes a standardized model interoperability interface, and is able to couple to third-party models and software. Landlab also offers tools to allow the creation of cellular automata, and allows native coupling of such models to more traditional continuous differential equation-based modules. We illustrate the principles of component coupling in Landlab using a model of landform evolution, a cellular ecohydrologic model, and a flood-wave routing model.
机译:事实证明,对表面过程进行建模并将其耦合到地下和大气环境的能力对于地球和行星科学领域的研究具有不可估量的价值。但是,创建新模型通常需要花费大量时间,而修改现有模型以解决新问题通常意味着新工作受限于针对不同问题的模型调整,从而不利于其发展。 Landlab是一个开放源代码软件框架,其明确设计用于通过提供(1)一组工具和现有网格结构(包括规则网格和不规则网格)来加快新过程模型的开发,从而更快,更轻松地开发新的过程组件。或物理过程的数字实现; (2)一组稳定,模块化和可互操作的过程组件,可以将其组合以创建集成模型; (3)一组用于数据输入,输出,操纵和可视化的工具。还提供了一组使用这些组件构建的示例模型。 Landlab的结构使其不仅是完全开发的建模应用程序的理想选择,而且还是模型原型制作和教室使用的理想选择。由于其模块化的性质,它还可以用作模型比较,认知不确定性和敏感性分析的平台。 Landlab公开了标准化的模型互操作性界面,并能够耦合到第三方模型和软件。 Landlab还提供了允许创建元胞自动机的工具,并允许将此类模型与传统的基于连续微分方程的模块进行自然耦合。我们使用地形演化模型,细胞生态水文模型和洪水波路由模型来说明Landlab中组件耦合的原理。

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