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Effect of urban design on microclimate and thermal comfort outdoors in warm-humid Dar es Salaam, Tanzania

机译:城市设计对坦桑尼亚温湿润达累斯萨拉姆微气门和热舒适舒适的影响

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摘要

Due to the complexity of built environment, urban design patterns considerably affect the microclimate and outdoor thermal comfort in a given urban morphology. Variables such as building heights and orientations, spaces between buildings, plot coverage alter solar access, wind speed and direction at street level. To improve microclimate and comfort conditions urban design elements including vegetation and shading devices can be used. In warm-humid Dar es Salaam, the climate consideration in urban design has received little attention although the urban planning authorities try to develop the quality of planning and design. The main aim of this study is to investigate the relationship between urban design, urban microclimate, and outdoor comfort in four built-up areas with different morphologies including low-, medium-, and high-rise buildings. The study mainly concentrates on the warm season but a comparison with the thermal comfort conditions in the cool season is made for one of the areas. Air temperature, wind speed, mean radiant temperature (MRT), and the physiologically equivalent temperature (PET) are simulated using ENVI-met to highlight the strengths and weaknesses of the existing urban design. An analysis of the distribution of MRT in the areas showed that the area with low-rise buildings had the highest frequency of high MRTs and the lowest frequency of low MRTs. The study illustrates that areas with low-rise buildings lead to more stressful urban spaces than areas with high-rise buildings. It is also shown that the use of dense trees helps to enhance the thermal comfort conditions, i.e., reduce heat stress. However, vegetation might negatively affect the wind ventilation. Nevertheless, a sensitivity analysis shows that the provision of shade is a more efficient way to reduce PET than increases in wind speed, given the prevailing sun and wind conditions in Dar es Salaam. To mitigate heat stress in Dar es Salaam, a set of recommendations and guidelines on how to develop the existing situation from microclimate and thermal comfort perspectives is outlined. Such recommendations will help architects and urban designers to increase the quality of the outdoor environment and demonstrate the need to create better urban spaces in harmony with microclimate and thermal comfort.
机译:由于建筑环境的复杂性,城市设计模式在给定的城市形态学中显着影响了微气候和室外热舒适性。建筑物高度和方向等变量,建筑物之间的空间,绘图覆盖范围改变了街道水平的太阳能访问,风速和方向。为了改善小气候和舒适条件,可以使用包括植被和遮光装置的城市设计元素。在温暖潮湿的达累斯萨拉姆,城市设计中的气候考虑因素收到了很少的关注,尽管城市规划当局试图制定规划和设计质量。本研究的主要目的是调查四个内置区域的城市设计,城市小气候和户外舒适性的关系,其中包括低,中等和高层建筑等不同形态。该研究主要集中在温暖的季节上,但与凉爽季节的热舒适条件相比是对其中一个领域的。空气温度,风速,平均辐射温度(MRT)和生理上等同的温度(PET)模拟使用环境来突出现有城市设计的优势和弱点。地区MRT分布的分析表明,具有低层建筑物的区域具有最高频率的高推动机和低MRT的最低频率。该研究说明了具有低层建筑的地区,与高层建筑的地区相比,具有比较压力的城市空间。还表明,使用致密树木有助于增强热舒适条件,即减少热应力。然而,植被可能会对风通气产生负面影响。然而,鉴于Dar Es Salaam的盛行和风条件,敏感性分析表明,提供了一种更有效的方式来减少PET的宠物,而不是风速的增加。为了减轻Dar Es Salaam的热量压力,概述了一套关于如何开发从小气候和热舒适视角制定现有情况的建议和指导方针。这些建议将有助于建筑师和城市设计师提高户外环境的质量,并展示与微气候和热舒适的和谐创造更好的城市空间的必要性。

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