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Spatial-temporal study on the effects of urban street configurations on human thermal comfort in the world heritage city of Camaguey-Cuba

机译:世界遗产城市卡马圭-古巴的城市街道配置对人类热舒适性影响的时空研究

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The conservation of historical urban centres is an important resource to encourage liveability and sustainable development of cities in the context of global climate change. It is a complex process that serves diverse perspectives, among them is the thermal comfort. The paper analyze the contribution of street configuration towards the improvement of thermal comfort at pedestrian level, in the Old Town of Camaguey-Cuba (World Heritage Site, since 2008). Simulations performed are run for summer and winter solstices by using RayMan model. The urban settings are represented by symmetrical street canyons (380 m long, 9 m width), with different solar orientations (i.e. N-S, NE-SW, E-W, NW-SE) and aspect ratios (i.e. H/W = 0.5, 1, 1.5, 2, 3, 4, 5). Results are presented in terms of Physiologically Equivalent Temperature (PET). Our findings confirm that the spatial distribution of thermal conditions at street level, depend strongly on aspect ratio and street orientation. The results show extreme patterns of thermal comfort between N-S and E-W streets. Rotation to N-S orientation is a valid strategy to mitigate the heat stress in summer, with reductions of up to 2 h at the center of the street. Aspect ratios between 1 and 1.5 offer a quite acceptable thermal performance for summer and winter. PET patterns discussed give information about the most suitable locations for pedestrian within the street. The urban guidelines presented enable to urban planners rehabilitate and design cities, which are able to reduce the impact of thermal stress in hot-humid climates. The results could be included in the Urban Regulations of Camaguey. (C) 2016 Elsevier Ltd. All rights reserved.
机译:保护历史悠久的城市中心是在全球气候变化背景下鼓励城市宜居性和可持续发展的重要资源。这是一个复杂的过程,可提供多种视角,其中之一就是热舒适性。本文分析了Camaguey-Cuba的旧城区(世界遗产,自2008年以来)对改善行人水平的热舒适性的街道结构的贡献。通过使用RayMan模型对夏至冬至进行了模拟。城市环境由对称的街道峡谷(长380 m,宽9 m)代表,具有不同的太阳方位(即NS,NE-SW,EW,NW-SE)和纵横比(即H / W = 0.5、1, 1.5、2、3、4、5)。结果以生理等效温度(PET)表示。我们的发现证实,街道水平热条件的空间分布在很大程度上取决于纵横比和街道方向。结果显示了N-S和E-W街道之间极端的热舒适度。旋转至N-S方向是缓解夏季热压力的有效策略,在街道中心最多可减少2小时。纵横比在1到1.5之间可为夏季和冬季提供相当令人满意的热性能。讨论的PET模式可提供有关街道内行人最合适位置的信息。提出的城市指南使城市规划人员能够修复和设计城市,从而能够减少热应力在湿热气候中的影响。结果可以包括在《卡马圭城市条例》中。 (C)2016 Elsevier Ltd.保留所有权利。

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