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Impact of Surface Heterogeneity on Temperature, Mass and Energy Exchanges

机译:表面异质性对温度,质量和能量交换的影响

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In an attempt to provide more accurate estimates of sensible and latent heat fluxes and surface temperature, a 3-dimensional model is being developed. The originality of this model is to rely on a realistic description of the studied landscape: architecture, temperature, optical properties. It combines 3 components: (1) a radiative component managed by the 3-D radiative transfer DART model which simulates the 3-D distribution of absorbed and emitted radiation by the Earth surface and also directional reflectance and temperature images in the optical domain, (2) a vegetation functioning component managed by the leaf photosynthesis model of Collate and (3) a micrometeorological component managed by a simple parameterization of turbulence. This integrated model simulates the major vegetation and environmental processes at the root of mass and energy fluxes. Consequently it allows one to quantify how within cover, temperature and radiation distributions affect both vegetation functioning and remote sensing measurements. It is in its first stage but preliminary results are promising. Its applications are varied: to better understand interactions between vegetation architecture and functioning, to become a reference model for simpler models and also to better understand and use remotely sensed data.
机译:在尝试提供更准确的可明智和潜热通量和表面温度的估计,正在开发三维模型。该模型的原创性是依赖于研究景观的现实描述:架构,温度,光学性质。它结合了3个组分:(1)由3-D辐射转移飞镖模型管理的辐射分量,该模型模拟了地面表面的3-D分布和光学域中的定向反射率和温度图像,( 2)由Collat​​e的叶片光合模型管理的植被功能组件,(3)通过简单的湍流参数化管理的微型气象成分。这种集成模型在质量和能量通量的根部模拟了主要植被和环境过程。因此,它允许一个量化覆盖范围内的程度,温度和辐射分布在影响植被功能和遥感测量。它处于第一阶段,但初步结果是有前途的。其应用程序变化:以更好地了解植被架构和运作之间的相互作用,成为更简单的模型的参考模型,也可以更好地理解和使用远程感测数据。

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