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Integration of remote sensing based surface information into a three-dimensional microclimate model

机译:将基于遥感的地表信息集成到三维微气候模型中

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Climate change urges cities to consider the urban climate as part of sustainable planning. Urban micro climate models can provide knowledge on the climate at building block level. However, very detailed information on the area of interest is required. Most microclimate studies therefore make use of assumptions and generalizations to describe the model area. Remote sensing data with area wide coverage provides a means to derive many parameters at the detailed spatial and thematic scale required by urban climate models. This study shows how microclimate simulations for a series of real world urban areas can be supported by using remote sensing data. In an automated process, surface materials, albedo, LAI/LAD and object height have been derived and integrated into the urban microclimate model ENVI-met. Multiple microclimate simulations have been carried out both with the dynamic remote sensing based input data as well as with manual and static input data to analyze the impact of the RS-based surface information and the suitability of the applied data and techniques. A valuable support of the integration of the remote sensing based input data for ENVI-met is the use of an automated processing chain. This saves tedious manual editing and allows for fast and area wide generation of simulation areas. The analysis of the different modes shows the importance of high quality height data, detailed surface material information and albedo. (C) 2017 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:气候变化促使城市考虑将城市气候作为可持续规划的一部分。城市微观气候模型可以提供有关基础知识的气候知识。但是,需要有关感兴趣区域的非常详细的信息。因此,大多数小气候研究都利用假设和概括来描述模型区域。具有区域覆盖范围的遥感数据提供了一种方法,可以在城市气候模型要求的详细空间和主题范围内导出许多参数。这项研究显示了如何通过使用遥感数据来支持一系列现实世界城市地区的微气候模拟。通过自动化过程,已经得出了表面材料,反照率,LAI / LAD和物体高度,并将其集成到城市微气候模型ENVI-met中。基于动态遥感的输入数据以及手动和静态输入数据均进行了多次微气候模拟,以分析基于RS的地面信息的影响以及所应用数据和技术的适用性。使用ENVI-met集成基于遥感的输入数据的宝贵支持是使用自动处理链。这节省了繁琐的手动编辑,并允许快速,广泛地生成仿真区域。对不同模式的分析显示出高质量的高度数据,详细的表面材料信息和反照率的重要性。 (C)2017国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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