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杭州新电力调度大楼绿色建筑项目设计及其优化研究

发布时间:2018-04-08 16:30

  本文选题:绿色建筑 切入点:建筑节能 出处:《华北电力大学》2015年硕士论文


【摘要】:我国当前的绿色建筑节能项目建设规模较小,建筑节能工作开展的广度和深度还不够,现有研究成果主要集中于国外的节能技术理论及既有建筑的节能改造,新建建设项目案例较少。本文将在绿色建筑评价体系研究及节能项目建设方面进行实践,同时提供实践案例成果。在分析国内建筑节能现状和国外新建或既有建筑节能改造经验的基础上,首先研究我国绿色建筑体系和国外绿色建筑体系的特点,运用多方理论进行分析。我国建筑能耗占社会总能耗的比重较大,人口增长及建筑需求的增加使建筑能耗越来越大。鉴于能源形势紧迫的现状,建筑节能已成为我国节能减排、可持续发展道路上的工作重点之一。绿色建筑越来越受到全社会关注,相关部门出台了我国首部《绿色建筑评价标准》,为我国绿色建筑的开展提供了坚实的政策支持,倡导并确立了适应我国国情的绿色建筑评价体系及理论。本文讨论分析了我国绿色建筑评价体系与国外体系的区别,以杭州供电公司新电力生产调度大楼绿色建筑项目建设为实际案例,进行系统的分析研究。最后在分析绿色建筑评价及其成果的基础上,结合新电力生产调度大楼各专业工程设计内容,在政策引用、标准采用、技术应用等方面进重点研究,开展绿色建筑项目的建设实践工作。考虑到绿色建筑项目的建设造价问题,因地制宜的合理采用节能技术,为该项目设计了星级评定方案,系统的说明项目管理过程和方案实施细节,为绿色建筑项目实施提出合理化建议。研究旨在为绿色建筑的建设管理提供典型经验,通过分析评价绿色建筑项目实施方案和效果,为绿色建筑评价研究和建筑节能技术的推广使用提供理论和实践依据,可作为该类评价研究和系统实践方面的参考。
[Abstract]:The current construction of green building energy conservation projects in China is relatively small, and the breadth and depth of building energy conservation work is not enough. The existing research results mainly focus on the theory of energy saving technology abroad and the energy saving transformation of existing buildings.The case of new construction project is less.This article will carry on the practice in the green building appraisal system research and the energy conservation project construction, at the same time provides the practice case result.Based on the analysis of the present situation of energy saving in domestic buildings and the experience of new or existing building energy saving transformation abroad, the characteristics of green building system and foreign green building system in China are studied firstly, and the multi-party theory is used to analyze the characteristics of the green building system.Building energy consumption in China accounts for a large proportion of the total energy consumption in society. The increase of population and building demand makes the building energy consumption more and more.In view of the urgent energy situation, building energy conservation has become one of the key points of energy saving and sustainable development in China.Green building has attracted more and more attention of the whole society. The relevant departments have issued the first evaluation standard of green building in China, which provides solid policy support for the development of green building in our country.Advocate and establish the green building evaluation system and theory adapted to the national conditions of our country.This paper discusses and analyzes the difference between the green building evaluation system of our country and the foreign system. Taking the green building construction of the new power production and dispatching building of Hangzhou Power supply Company as a practical case, this paper makes a systematic analysis and study.Finally, on the basis of analyzing the evaluation of green building and its achievements, combined with the design contents of various specialties in the new electric power production and dispatching building, the key research is put forward in the aspects of policy quotation, standard adoption, technology application, etc.Carry out the construction practice of green building project.Considering the construction cost of the green building project and adopting energy saving technology reasonably according to local conditions, the star rating scheme is designed for the project, which systematically explains the project management process and the implementation details of the project,To put forward rational suggestions for the implementation of green building projects.The purpose of the study is to provide typical experience for the construction and management of green building, and to provide theoretical and practical basis for the research of green building evaluation and the popularization and application of building energy saving technology through the analysis and evaluation of the implementation plan and effect of green building project.It can be used as a reference for this kind of evaluation research and system practice.
【学位授予单位】:华北电力大学
【学位级别】:硕士
【学位授予年份】:2015
【分类号】:TU201.5;TU243.2

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