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Application of sustainability design to an existing viaduct in a hilly area

机译:可持续性设计在丘陵地区现有高架桥上的应用

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The World Commission on Environment and Development of the United Nations defined sustainable development for the first time in 1987, indicating the necessity for considering development that fulfils the needs of both present and future generations. However, the current situation of the sharp growth in the population and resources/energy consumption that adversely affects the global climate has been adding significance to the concept of sustainable development. From this background, the authors proposed a sustainability design system. This design method includes systems to clearly set the performance requirements to be considered with respect to social, economic, and environmental aspects, calculate the attained performance, and verify if the performance requirements are met. This paper describes the application feasibility of the sustainability design through the above procedures using an existing prestressed concrete viaduct. Additionally, comprehensive evaluation is carried out regarding the relationship between the elements of sustainability in comparison with the general method to clarify the effectiveness of sustainability design. It is concluded that sustainability design system has great potential of its applicability to concrete structures and promoting technical innovation based on setting of high-performance requirements.
机译:联合国世界环境与发展委员会于1987年首次定义了可持续发展,表明有必要考虑满足当代和子孙后代需求的发展。但是,当前人口和资源/能源消耗急剧增长对全球气候产生不利影响的现状,对可持续发展的概念越来越重要。在这种背景下,作者提出了一种可持续性设计系统。该设计方法包括明确设置有关社会,经济和环境方面要考虑的性能要求,计算所达到的性能以及验证是否满足性能要求的系统。本文通过上述程序,使用现有的预应力混凝土高架桥描述了可持续性设计的应用可行性。此外,与一般方法相比,对可持续性要素之间的关系进行了综合评估,以阐明可持续性设计的有效性。结论是,可持续性设计系统具有很大的潜力,可用于混凝土结构,并在设定高性能要求的基础上促进技术创新。

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