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Sky View Factors from Synthetic Fisheye Photos for Thermal Comfort Routing—A Case Study in Phoenix, Arizona

机译:来自综合鱼眼照片的天空视图因素为热舒适路由 - 以凤凰城,亚利桑那州的案例研究

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摘要

The Sky View Factor (SVF) is a dimension-reduced representation of urban form and one of the major variables in radiation models that estimate outdoor thermal comfort. Common ways of retrieving SVFs in urban environments include capturing fisheye photographs or creating a digital 3D city or elevation model of the environment. Such techniques have previously been limited due to a lack of imagery or lack of full scale detailed models of urban areas. We developed a web based tool that automatically generates synthetic hemispherical fisheye views from Google Earth at arbitrary spatial resolution and calculates the corresponding SVFs through equiangular projection. SVF results were validated using Google Maps Street View and compared to results from other SVF calculation tools. We generated 5-meter resolution SVF maps for two neighborhoods in Phoenix, Arizona to illustrate fine-scale variations of intra-urban horizon limitations due to urban form and vegetation. To demonstrate the utility of our synthetic fisheye approach for heat stress applications, we automated a radiation model to generate outdoor thermal comfort maps for Arizona State University’s Tempe campus for a hot summer day using synthetic fisheye photos and on-site meteorological data. Model output was tested against mobile transect measurements of the six-directional radiant flux density. Based on the thermal comfort maps, we implemented a pedestrian routing algorithm that is optimized for distance and thermal comfort preferences. Our synthetic fisheye approach can help planners assess urban design and tree planting strategies to maximize thermal comfort outcomes and can support heat hazard mitigation in urban areas.
机译:天空视图因子(SVF)是城市形态的尺寸减少表示和辐射模型中的一个主要变量,估计室外热舒适度。检索城市环境中SVFS的常见方法包括捕获Fisheye照片或创建数字3D城市或环境的高程模型。由于缺乏图像或缺乏全面规模的城市地区的详细模型,此类技术已经受到限制。我们开发了一种基于Web的工具,可以在任意空间分辨率下自动从Google地球生成合成的半球形Fisheye视图,并通过等态投影计算相应的SVF。使用Google Maps Street View进行验证SVF结果,并与其他SVF计算工具的结果进行了验证。我们为亚利桑那州凤凰城的两个社区生成了5米分辨率的SVF地图,以说明由于城市形态和植被为城市地平线限制的微尺度变化。为了证明我们的合成鱼眼方法对热应力应用的效用,我们自动化辐射模型,为亚利桑那州立大学的坦佩校园提供户外热舒适地图,以便使用合成鱼眼照片和现场气象数据。对六方向辐射通量密度的移动横断测量进行测试模型输出。基于热舒适图,我们实施了一个人行路由算法,用于优化距离和热舒适偏好。我们的合成鱼眼方法可以帮助规划人员评估城市设计和树木种植策略,以最大限度地提高热舒适结果,可以支持城市地区的热危害缓解。

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