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3D modeling of radiative transfer and energy balance in urban canopies combined to remote sensing acquisitions

机译:结合遥感采集的城市雨棚辐射传输和能量平衡的3D建模

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In this paper we present a study on the use of remote sensing data combined to the 3D modeling of radiative transfer (RT) and energy balance in urban canopies in the aim to improve our knowledge on anthropogenic heat fluxes in several European cities (London, Basel, Heraklion, and Toulouse). The approach is based on the forcing by the use of LandSAT8 data of a coupled radiative transfer model DART (Direct Anisotropic Radiative Transfer) (www.cesbio.upstlse.fr/dart) with an energy balance module. LandSAT8 visible remote sensing data is used to better parametrize the albedo of the urban canopy and thermal remote sensing data is used to enhance the anthropogenic component in the coupled model. This work is conducted in the frame of the H2020 project URBANFLUXES, which aim is to improve the efficiency of remote-sensing data usage for the determination of the anthropogenic heat fluxes in urban canopies [5].
机译:在本文中,我们将对遥感数据与城市雨棚的辐射传递(RT)和能量平衡的3D建模相结合进行研究,以提高我们对欧洲几个城市的人为热通量的了解(伦敦,巴塞尔,伊拉克利翁和图卢兹)。该方法基于通过使用具有能量平衡模块的耦合辐射传输模型DART(直接各向异性辐射传输)(www.cesbio.upstlse.fr/dart)的LandSAT8数据进行强制。 LandSAT8可见遥感数据用于更好地参数化城市冠层的反照率,而热遥感数据则用于增强耦合模型中的人为成分。这项工作是在H2020项目URBANFLUXES的框架内进行的,该项目旨在提高遥感数据用于确定城市冠层人为热通量的效率[5]。

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