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Spatial planning for urban ventilation corridors by urban climatology

机译:城市气候学城市通风走廊的空间规划

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Ventilation corridors in cities can decrease air pollution and alleviate heat island problems but there remains a need to fully assess their effectiveness. Few urban managers have been able to take city-scale approaches to the construction of urban ventilation corridors. This study aimed to introduced the Ventilation Corridor Planning (VCP) model, which is a multi-criteria evaluation method combined with a geographical information system (GIS) to determine where the ventilated environment is most appropriate. Specifically, the VCP model took Bozhou, China as the research object and contained two scales, including mesoscale and local scale. In mesoscale scale, we got three outputs to build urban ventilation corridors, including 1) background wind environment, 2) ventilation potential, 3) heat island intensity. In local scale, we used traditional computational fluid dynamics (CFD) model to verify the impact of VCP criteria. The results revealed that compared with the traditional CFD model, the proposed VCP model has advantages in establishing a comprehensive evaluation standard. In addition, the application of VCP model in macro and micro also enhances the efficiency of ventilation corridor construction. Overall, this study introduced a effective modeling method to urban ventilation corridors planning, and provide a way to study the urban climate.
机译:城市通风走廊可以减少空气污染和缓解热岛问题,但仍有需要充分评估其有效性。很少有城市经理能够将城市规模的途径接近城市通风走廊的建设。本研究旨在引入通风走廊规划(VCP)模型,这是一种与地理信息系统(GIS)相结合的多标准评估方法,以确定通风环境最合适的位置。具体而言,VCP模型以博州市,中国作为研究对象,并包含两种尺度,包括Messcale和局部规模。在Mesoscale规模中,我们得到了三个产出来建立城市通风走廊,包括1)背景风环境,2)通风电位,3)热岛强度。在本地规模中,我们使用传统的计算流体动力学(CFD)模型来验证VCP标准的影响。结果表明,与传统的CFD模型相比,所提出的VCP模型在建立综合评估标准方面具有优势。此外,VCP模型在宏观和微观中的应用还提高了通风走廊施工的效率。总体而言,本研究向城市通风走廊规划引入了有效的建模方法,并提供了研究城市气候的方法。

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