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Integration of a Three-Dimensional Process-Based Hydrological Model into the Object Modeling System

机译:将基于三维过程的水文模型集成到对象建模系统中

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The integration of a spatial process model into an environmental modeling framework can enhance the model’s capabilities. This paper describes a general methodology for integrating environmental models into the Object Modeling System (OMS) regardless of the model’s complexity, the programming language, and the operating system used. We present the integration of the GEOtop model into the OMS version 3.0 and illustrate its application in a small watershed. OMS is an environmental modeling framework that facilitates model development, calibration, evaluation, and maintenance. It provides innovative techniques in software design such as multithreading, implicit parallelism, calibration and sensitivity analysis algorithms, and cloud-services. GEOtop is a physically based, spatially distributed rainfall-runoff model that performs three-dimensional finite volume calculations of water and energy budgets. Executing GEOtop as an OMS model component allows it to: (1) interact directly with the open-source geographical information system (GIS) uDig-JGrass to access geo-processing, visualization, and other modeling components; and (2) use OMS components for automatic calibration, sensitivity analysis, or meteorological data interpolation. A case study of the model in a semi-arid agricultural catchment is presented for illustration and proof-of-concept. Simulated soil water content and soil temperature results are compared with measured data, and model performance is evaluated using goodness-of-fit indices. This study serves as a template for future integration of process models into OMS.
机译:将空间过程模型集成到环境建模框架中可以增强模型的功能。本文描述了将环境模型集成到对象建模系统(OMS)中的通用方法,而无需考虑模型的复杂性,编程语言和所使用的操作系统。我们介绍了将GEOtop模型集成到OMS 3.0版中的情况,并说明了它在一个小流域中的应用。 OMS是一个环境建模框架,可促进模型开发,校准,评估和维护。它提供了软件设计方面的创新技术,例如多线程,隐式并行,校准和灵敏度分析算法以及云服务。 GEOtop是基于物理的,空间分布的降雨-径流模型,可对水和能源预算进行三维有限体积计算。将GEOtop作为OMS模型组件来执行,可以使其:(1)直接与开源地理信息系统(GIS)uDig-JGrass交互以访问地理处理,可视化和其他建模组件; (2)使用OMS组件进行自动校准,灵敏度分析或气象数据插值。提出了该模型在半干旱农业流域的案例研究,以进行说明和概念验证。将模拟的土壤水分和土壤温度结果与测量数据进行比较,并使用拟合优度指标评估模型性能。这项研究是将来将过程模型集成到OMS中的模板。

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