This study cross-validates existing urban maps using point cloud models to update GIS related data. The model, as-built 3D data, is created to integrate with maps in an architectural CAD platform. The clouds are refer...This study cross-validates existing urban maps using point cloud models to update GIS related data. The model, as-built 3D data, is created to integrate with maps in an architectural CAD platform. The clouds are referred by existing vector maps to verify inconsistency and to update 3D spatial relationships between subjects and environment. The cloud model shows its top reference hierarchy as the updated data for topographic-derived urban maps.展开更多
以澳大利亚阿德莱德中心城区为研究区,基于高分辨率城市三维建筑物数据计算得到天空开阔度(sky view factor,SVF)与迎风面积指数(frontal area index,FAI),并将其与晴好天气下四季的城市热岛强度进行相关性分析。结果表明:晴好天气下,...以澳大利亚阿德莱德中心城区为研究区,基于高分辨率城市三维建筑物数据计算得到天空开阔度(sky view factor,SVF)与迎风面积指数(frontal area index,FAI),并将其与晴好天气下四季的城市热岛强度进行相关性分析。结果表明:晴好天气下,阿德莱德城市热岛强度(urban heat island intensity,UHII)在2010—2011年四季均呈现出夜间强、白天弱的变化特征。SVF与UHII在夜间呈显著线性负相关,白天呈线性正相关;而FAI与UHII在四季的夜间和早晨时段呈对数关系,白天呈线性负相关。SVF和FAI对不同季节、不同时刻的城市热岛影响不同,在不同空间尺度下的适用性也存在差异,SVF在不同空间尺度下适用性更强。展开更多
文摘This study cross-validates existing urban maps using point cloud models to update GIS related data. The model, as-built 3D data, is created to integrate with maps in an architectural CAD platform. The clouds are referred by existing vector maps to verify inconsistency and to update 3D spatial relationships between subjects and environment. The cloud model shows its top reference hierarchy as the updated data for topographic-derived urban maps.
文摘以澳大利亚阿德莱德中心城区为研究区,基于高分辨率城市三维建筑物数据计算得到天空开阔度(sky view factor,SVF)与迎风面积指数(frontal area index,FAI),并将其与晴好天气下四季的城市热岛强度进行相关性分析。结果表明:晴好天气下,阿德莱德城市热岛强度(urban heat island intensity,UHII)在2010—2011年四季均呈现出夜间强、白天弱的变化特征。SVF与UHII在夜间呈显著线性负相关,白天呈线性正相关;而FAI与UHII在四季的夜间和早晨时段呈对数关系,白天呈线性负相关。SVF和FAI对不同季节、不同时刻的城市热岛影响不同,在不同空间尺度下的适用性也存在差异,SVF在不同空间尺度下适用性更强。