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A Study on the Impact of Changes in the Materials Reflection Coefficient for Achieving Sustainable Urban Design

机译:材料反思系数变化对可持续城市设计的影响研究

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A lot of geographers, scientists believe that the current climate has changed. Especially, since the rapid increment of world's population. Indeed, rapid urbanization led to an increased demand of basic facilities, such as public transport services, hospitals, housing &, etc. Accordingly;; the urban areas of cities have been expanded compared to rural areas, and many modifications and changes have been happened on their surface's materials. These modifications made our cities hotter than the Countryside, UHI effect phenomenon now well-known. One of the main reasons behind these changes is construction materials in both buildings and urban spaces, which play a major role in affecting the urban temperatures, precisely near-surface air temperatures positively or negatively, which depend mainly on the behaviour of the surface with solar radiation and how the energy is reflected, emitted, and absorbed. Thus, the current study aimed to investigate the direct and indirect impacts of materials reflection coefficient on the environmental performance and external urban surface temperature;; by using the SOLENE-microclimate model tool (developed by the laboratory CRENAU-ENSA Nantes);; which is a direct effect on external air temperature in terms of sustainability in the urban context. This study applied on one of the most important residential complexes in Mosul city-Iraq as a case study. The results were proved that when used a material with high reflectivity;; Comparing low albedo Scenario (1) with high albedo Scenario (3);; it can improve the thermal behaviour of building and urban surfaces, where the surfaces temperature of rooftop, walls, urban spaces, road have been changed by, respectively, 25°C, 18 °C, 20°C, and 18°C. As well as changed the urban air temperature by 11°C. However, the results showed that in some cases the surface temperatures increased slightly even when reflectivity increased in the scene, (comparison scenario 3 and scenario 5) where the change of albedo value of external walls surfaces have affected increasing the average urban spaces & pavement temperature about 2°C. The tool that is used in this study (SOLENE-microclimate) has effectively helped in achieving all the analysis required successfully, which it represent the most specialized tool in this field.
机译:很多地理学家,科学家认为目前的气候已经发生变化。特别是,自世界人口的快速增长以来。实际上,快速的城市化导致了基本设施的需求,如公共交通服务,医院,住房&等。与农村地区相比,城市的城市地区已经扩大,并在其表面材料上发生了许多修改和变化。这些修改使我们的城市比乡村更热,UHI效应现象现在众所周知。这些变化背后的主要原因之一是建筑物和城市空间中的建筑材料,这在影响城市温度方面发挥了重要作用,积极地或负面地靠近表面空气温度,这主要取决于地面与太阳能的行为辐射以及能量如何反射,发出和吸收。因此,目前的研究旨在调查材料反射系数对环境性能和外部城市表面温度的直接和间接影响;通过使用Solene-Microclime模型工具(由实验室Crenau-Ensa Nantes开发);这对于城市背景下的可持续性方面是对外部空气温度的直接影响。本研究适用于Mosul City-Iraq最重要的住宅综合体作为案例研究。证明了结果,当使用具有高反射率的材料;比较低反照学场景(1),高玻璃方案(3);;它可以提高建筑和城市表面的热行为,其中屋顶,墙壁,城市空间,道路的表面温度分别发生,分别为25°C,18°C,20°C和18°C。以及将城市空气温度变为11°C。然而,结果表明,在某些情况下,即使在场景中的反射率增加,(比较场景3和场景5)的情况下,表面温度也略有增加,其中外墙表面的Albedo值的变化影响增加了平均城市空间和路面温度大约2°C。本研究(Solene-Microclimate)使用的工具已经有效地帮助实现了成功所需的所有分析,它代表了该领域中最专业的工具。

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