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Research on the building energy efficiency design strategy of Chinese universities based on green performance analysis

机译:基于绿色绩效分析的中国大学建筑能效设计策略研究

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China has a large number of existing public buildings and rapidly growing energy demand of public buildings. For this reason, the government and the relevant administrative sections have issued many policies, regulations, and incentives to decelerate the growth of the energy consumption of public build-ings. However, the diverse types of buildings, as well as different design standards and construction tech-nologies, create large differences in the energy consumption rules and energy efficiency standards of different buildings. The total number of universities in China is approximately 2845, with 13 types of buildings. The annual energy consumption is nearly 30 million tons of standard coal, and the water con-sumption is nearly 4 million tons. The total energy consumption accounts for 8% of the total social energy consumption. The energy and water consumption of each student are 4 times and 2 times that of the average Chinese resident, respectively, and show with a rigid growth trend. Based on the concept of "green performance" proposed by the "Evaluation Standard for Green Buildings" (GB/T50378-2019), this study takes the most representative building types of libraries and dormitories as examples. The prob-lems of these building types are systematically analyzed in terms of planning layout, lighting, ventilation, thermal comfort, system energy consumption and equipment energy consumption through on-site inves-tigation, thermal environment testing, energy consumption data analysis, and environment, shape and structure design simulation. Finally, the energy efficiency design strategy model of university buildings based on green performance analysis is established, including planning and design strategy, form design strategy, construction design strategy, system design strategy, and equipment use strategy, especially the sub-items of form design and space division in the formal design strategy. This strategy is the best response to the need to advance the energy efficiency design of these buildings. From the beginning of the design, energy efficiency should be combined with architectural planning and layout, functional design, construction design, system design and other noumenon elements. On the one hand, the strategy considers the relationship between the sub items and energy efficiency such as shape design and spatial division related to the building function; on the other hand, it also considers the relationship between the system design and energy efficiency of large-scale buildings, to meet the requirements of 65% energy con-servation in "The Design Standard for Energy Efficiency of Public Buildings" (GB 50189-2015).These con-siderations are all representative of a design strategy that incorporates green performance characteristics. The research results show that the existing buildings can be retrofitted to fully tap their energy efficiency potential, and new buildings should incorporate energy efficiency from the stage of architectural design, to allow technology to serve the design; achieve the efficiency, health and applicability goals of green buildings; and achieve the energy efficiency design goal based on green performance analysis. (C) 2020 Elsevier B.V. All rights reserved.
机译:中国拥有大量现有的公共建筑,迅速增长的公共建筑能源需求。出于这个原因,政府和相关行政部门已发出许多政策,法规和激励措施,以减速公共建设能源消耗的增长。然而,不同类型的建筑物以及不同的设计标准和建设技术,在不同建筑物的能耗规则和能效标准方面产生了巨大差异。中国的大学总数约为2845年,建筑物13种。年度能耗近3000万吨标准煤炭,水持久性差距近400万吨。总能源消耗占社会能源总量总量的8%。每个学生的能源和耗水量分别为普通中国居民的4倍,呈现出僵硬的增长趋势。基于“绿色建筑物评估标准”提出的“绿色绩效”概念(GB / T50378-2019),本研究采用最具代表性的建筑类型的图书馆和宿舍作为示例。通过现场投资凝固,热环境测试,能耗数据分析和环境系统,在规划布局,照明,通风,热舒适,系统能源消耗和设备能耗方面进行系统地分析这些建筑类型的概率,形状和结构设计模拟。最后,建立了基于绿色绩效分析的大学建筑能效设计策略模型,包括规划和设计策略,形成设计策略,建筑设计策略,系统设计策略和设备使用策略,尤其是表格设计的子项和太空师在正式的设计战略中。这种策略是对需要推进这些建筑物能效设计的最佳反应。从设计开始,能效应应与架构规划和布局,功能设计,施工设计,系统设计和其他Noumenon元素相结合。一方面,该策略考虑了子项和能效之间的关系,例如与建筑功能相关的形状设计和空间划分;另一方面,它还考虑了大型建筑的系统设计和能源效率之间的关系,以满足“公共建筑能源效率设计标准”中的65%能量伺服的要求(GB 50189- 2015)。这些Con-verileations都代表了一种包含绿色性能特征的设计策略。研究结果表明,现有建筑物可以完全挖掘其能效潜力,新建筑应从建筑设计阶段融合能源效率,以允许技术服务设计;实现绿色建筑的效率,健康和适用性目标;基于绿色绩效分析实现能效设计目标。 (c)2020 Elsevier B.v.保留所有权利。

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