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An Overview of the Use of the SimSphere Soil Vegetation Atmosphere Transfer (SVAT) Model for the Study of Land-Atmosphere Interactions

机译:SimSphere土壤植被大气迁移(SVAT)模型在土地-大气相互作用研究中的应用概述

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Soil Vegetation Atmosphere Transfer (SVAT) models consist of deterministic mathematical representations of the physical processes involved between the land surface and the atmosphere and of their interactions, at time-steps acceptable for the study of land surface processes. The present article provides a comprehensive and systematic review of one such SVAT model suitable for use in mesoscale or boundary layer studies, originally developed by [1]. This model, which has evolved significantly both architecturally and functionally since its foundation, has been widely applied in over thirty interdisciplinary science investigations, and it is currently used as a learning resource for students in a number of educational institutes globally. The present review is also regarded as very timely, since a variation of a method using this specific SVAT model along with satellite observations is currently being considered in a scheme being developed for the operational retrieval of soil surface moisture by the US National Polar-orbiting Operational Environmental Satellite System (NPOESS), in a series of satellites that are due to be launched from 2016 onwards.
机译:土壤植被大气迁移(SVAT)模型由确定性的数学表示形式组成,这些数学表示形式涉及陆地表面与大气之间的物理过程及其相互作用,并且在研究陆地表面过程可接受的时间步长上也是如此。本文提供了一种适用于中尺度或边界层研究的SVAT模型的全面,系统的综述,该模型最初由[1]开发。自从建立以来,该模型在架构和功能上都发生了重大变化,现已广泛应用于30多个跨学科的科学研究中,并且目前已被全球许多教育机构用作学生的学习资源。本次审查也被认为是非常及时的,因为在美国国家极地轨道运行组织正在对土壤表面水分进行操作检索的方案中,目前正在考虑使用这种特定的SVAT模型以及卫星观测方法的变化。环境卫星系统(NPOESS),将于2016年开始发射一系列卫星。

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