A Web-Based 3D Simulation Platform Aimed at Policy Makers for Estimating the Effects of Urban Heat Islands

IF 0.6 Q4 ENGINEERING, CIVIL Slovak Journal of Civil Engineering Pub Date : 2020-06-01 DOI:10.2478/sjce-2020-0010
G. Wurzer, U. Pont, W. Lorenz, Sigrun Swoboda, A. Mahdavi
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Abstract

Abstract The prediction of microclimate effects within an urban context through simulations has previously been done through elaborate software packages that offer accurate results but require extensive domain knowledge and time for the preparation of a model. In day-to-day policymaking, however, these efforts may turn out to be a major limiting factor: Policymakers and city administrators need a quick tool that can predict the effects of urban interventions in a variety of possible scenarios rather than a full-fledged simulation study for a limited set of specific interventions. In our work, we have been seeking to address this mismatch in expectations by using the best of both worlds: We have approximated results from a full-fledged simulation that uses a Cellular Automaton running within a 3D city visualization. Policymakers can edit the urban context by changing cell types (placement of greenery, etc.), thus leading to scenarios that can be compared to the status quo. As a matter of fact, policymakers can use these comparisons to argue for measures that mitigate the effects of heat islands, without requiring extensive domain knowledge or the effort to prepare a simulation model.
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一个基于网络的三维模拟平台,旨在决策者估计城市热岛效应
摘要通过模拟预测城市环境中的小气候影响以前是通过精心设计的软件包进行的,这些软件包提供了准确的结果,但需要广泛的领域知识和时间来准备模型。然而,在日常政策制定中,这些努力可能会成为一个主要的限制因素:政策制定者和城市管理者需要一个能够在各种可能的情况下预测城市干预措施效果的快速工具,而不是对一组有限的具体干预措施进行全面的模拟研究。在我们的工作中,我们一直在寻求通过两全其美的方法来解决这种期望值的不匹配:我们使用在3D城市可视化中运行的细胞自动机进行了全面模拟,得出了近似的结果。政策制定者可以通过改变细胞类型(绿化的位置等)来编辑城市环境,从而产生可以与现状进行比较的场景。事实上,政策制定者可以利用这些比较来论证减轻热岛效应的措施,而不需要广泛的领域知识或准备模拟模型。
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发文量
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审稿时长
29 weeks
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