首页> 外文会议>Proceedings of the 10th International Building Performancs Simulation Association Conference and Exhibition >CHANGES OF THE MICRO-CLIMATE AND BUILDING COOLING LOAD DUE TO THE GREEN EFFECT OF A RESTORED STREAM IN SEOUL, KOREA
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CHANGES OF THE MICRO-CLIMATE AND BUILDING COOLING LOAD DUE TO THE GREEN EFFECT OF A RESTORED STREAM IN SEOUL, KOREA

机译:韩国首尔恢复流的绿色效应导致的微气候和建筑冷却负荷的变化

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Cities all over the world have been warming up in the summer over the years. Seoul, Korea, is also an example of how a city was transformed into an urban heat island. Green areas produce social, economical and environmental benefits in highly populated urban areas. This study is to investigate the micro-climate changes and urban-scale cooling load reduction by the recently restored Cheonggye stream, also known as Cheonggyecheon, in Seoul, Korea. Under the urban development in 1950’s, Cheonggye stream located in central Seoul had been covered with pavement and the overpass of concrete structures for 58 years. A lot of surrounding buildings, traffic and people caused Cheonggye stream area to be getting hotter than other districts. For the urban environmental renovation, 5.84km-long stream was restored on September 2004. Since the restoration, the ecosystem in the center of Seoul is reviving. This simulation study analyzes the micro-climate changes in restored Cheonggye stream and its surroundings by using Envi-Met, a microclimate model designed to simulate the surface-plant-air interactions in urban environment. We employed TRNSYS to estimate the urban scaled cooling load reduction by means of the output data of Envi-Met simulation. The results indicated the cooling benefits of the restored stream areas are promising at the surrounding built environments.
机译:多年来,全世界的城市在夏季都在升温。韩国首尔也是一个城市如何转变为城市热岛的例子。绿化区在人口稠密的城市地区产生了社会,经济和环境效益。这项研究旨在调查韩国首尔最近恢复的清溪溪流(也称为清溪川)的微气候变化和城市规模的降温负荷减少。在1950年代的城市发展中,位于首尔市中心的清溪溪流已被路面和混凝土结构的立交桥覆盖了58年。清溪溪流地区的周围许多建筑物,交通和人流变得比其他地区更热。为了进行城市环境整治,2004年9月恢复了5.84公里长的溪流。自恢复以来,首尔市中心的生态系统正在恢复。这项模拟研究使用Envi-Met分析了清溪溪流及其周围地区的微气候变化,Envi-Met是一种微气候模型,旨在模拟城市环境中的地表植物与空气的相互作用。我们使用TRNSYS通过Envi-Met模拟的输出数据来估算城市规模的制冷负荷减少量。结果表明,在周围的建筑环境中,恢复的溪流区域的降温效果令人鼓舞。

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