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Landscape modification for ambient environmental improvement in central business districts - A case from Beijing

机译:风景区改造以改善中央商务区的环境-以北京为例

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Hundreds of large central business district (CBD) developments are in planning or development in China and other developing countries. Poor environmental performance in these large projects is thought to result from a lack of understanding of basic engineering requirements, especially transport-related. Large energy demand and air pollution are the obvious consequences. While many studies have focused on functional, symbolic and aesthetic requirements of these developments, environmental engineering has in general been neglected. In this study, a typical large-scale planned CBD in Beijing was investigated just several years after its completion and occupancy. The current transportation requirements of the development were measured. It was found that the road traffic provision exceeded demand. Redesign of road infrastructure and urban greening were evaluated for their contribution to alleviating heat stress in summer, providing a comfortable walking and living environment. Reducing the under-used road infrastructure, without affecting the traffic flow, would allow more space for urban vegetation. In particular, the thermal environment for pedestrians in the whole area could be substantially improved through the redesign of ground-level space. Using ENVI-met microclimate fluid dynamic model to measure the impact of greater green landscape area, it was found that the median air temperature (T-a) could be reduced by as much as 0.5 degrees C. The environmental advantages increase with time, as the tree canopies grow. In the micro-scaled simulation (300 x 600 m), the T-a was reduced by 1 degrees C. That is to say, urban summer T-a mitigation could be achieved if such effective modification schemes were expanded from the micro-scale urban community to the whole city. This research provides support for the use of urban landscape greening as a means to improve environmental conditions and energy demands in large-scale commercial urban development. Reducing redundant road infrastructure and improving the walking environment with urban greening could potentially suppress motorized traffic demand growth and contribute to a more sustainable urban environment. (C) 2014 Elsevier GmbH. All rights reserved.
机译:中国和其他发展中国家正在规划或开发数百个大型中央商务区(CBD)。这些大型项目的环境绩效差被认为是由于对基本工程要求缺乏了解,尤其是与运输有关的要求。大量的能源需求和空气污染是显而易见的后果。尽管许多研究集中于这些开发的功能,符号和美学要求,但总体上忽略了环境工程。在这项研究中,对北京一个典型的大型规划中的中央商务区在竣工和占用之后的几年进行了调查。测量当前开发项目的运输要求。发现道路交通供应超出需求。评估了道路基础设施的重新设计和城市绿化对缓解夏季热应力,提供舒适的步行和生活环境的贡献。在不影响交通流量的情况下,减少未充分利用的道路基础设施,将为城市植被腾出更多空间。特别是,通过重新设计地面空间,可以大大改善整个区域行人的热环境。使用ENVI-met小气候流体动力学模型来测量更大的绿色景观区域的影响,发现中值气温(Ta)最多可降低0.5摄氏度。随着时间的推移,环境优势随树而增加树冠生长。在微型模拟(300 x 600 m)中,Ta降低了1摄氏度。也就是说,如果将这种有效的修改方案从微型城市社区扩展到城市,则可以实现城市夏季Ta的缓解。整个城市。这项研究为使用城市景观绿化作为改善大规模商业城市发展中的环境条件和能源需求提供了支持。减少多余的道路基础设施并通过城市绿化改善步行环境可能会抑制机动交通需求的增长,并有助于实现更可持续的城市环境。 (C)2014 Elsevier GmbH。版权所有。

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