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Modeling methods to assess urban fluxes and heat island mitigation measures from street to city scale

机译:评估从街道到城市规模的城市通量和热岛缓解措施的建模方法

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The urban microclimate is due to complex physical interactions with the contribution of water balance, thermo-radiative exchanges and airflows. In this paper, we present and discuss modeling of heat island effects and mitigation techniques in order to give consistent results considering different time and space scales, and different fluxes (heat, water and winds) from ground to urban canopy, including buildings. The models and numerical descriptions are presented in detail and illustrated on typical examples of heat island mitigation techniques. At the neighborhood scale, alternative rainwater management techniques are studied by considering their impact on both seasonal water table depth and surface-atmosphere heat fluxes. Assessing the building thermal performance interactions with the microclimate requires adapted models that have to be refined for a better description of building envelope and systems effects. Two examples at the street and the neighborhood scale, modifying the building radiative properties or using green envelopes, show how simulation brings out the potential benefits of these techniques for the heat island mitigation and building energy performance.
机译:城市小气候是由于复杂的物理相互作用以及水平衡,热辐射交换和气流的作用。在本文中,我们提出并讨论了热岛效应和缓解技术的模型,以便在考虑到不同的时间和空间比例以及从地面到城市雨棚(包括建筑物)的不同通量(热,水和风)时得出一致的结果。详细介绍了模型和数值说明,并在热岛缓解技术的典型示例中进行了说明。在邻里范围内,研究了替代雨水管理技术,同时考虑了它们对季节性地下水位深度和地表大气热通量的影响。评估建筑物与微气候之间的热性能相互作用需要适应模型,为了更好地描述建筑物围护结构和系统效果,必须对其进行改进。在街道和邻里范围内的两个示例,修改了建筑物的辐射特性或使用了绿色围护结构,显示了模拟如何展示出这些技术对缓解热岛效应和建筑节能的潜在好处。

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