检索规则说明:AND代表“并且”;OR代表“或者”;NOT代表“不包含”;(注意必须大写,运算符两边需空一格)
检 索 范 例 :范例一: (K=图书馆学 OR K=情报学) AND A=范并思 范例二:J=计算机应用与软件 AND (U=C++ OR U=Basic) NOT M=Visual
作 者:金虹 邵腾 陈德龙 金雨蒙 Jin Hong;Shao Teng;Chen Delong;Jin Yumeng
机构地区:[1]哈尔滨工业大学建筑学院黑龙江省寒地建筑科学重点实验室 [2]哈尔滨工业大学建筑设计研究院
出 处:《南方建筑》2018年第2期37-40,共4页South Architecture
基 金:国家重点研发计划项目:既有公共建筑综合性能提升与改造关键技术,项目编号:2016YFC0700700
摘 要:外墙保温技术是提升严寒地区建筑热工性能的重要途径之一,可以显著降低建筑能耗,节约运行成本。虽然随着保温层厚度增加,节能率有所提高,但还要考虑到改造成本的问题,需要兼顾外墙改造的节能性和经济性,从而确定保温层的最佳厚度。文章以严寒地区(A区)城市伊春市某多层办公建筑为例,对3种不同材料的外墙外保温系统进行全年能耗分析,同时运用全寿命周期法确定不同保温系统的保温层经济厚度,为设计人员提供方法及数据参考。The thermal insulation technology for exterior walls is one important way to improve building thermal performance in severely cold regions by significantly reducing building energy consumption and reduce operating costs. As the insulating layer thickness increases, the energy efficiency rate improves, but the problem of reconstruction cost also must be considered. Determination of the optimal insulating layer thickness should simultaneously consider energy savings and the economy of exterior wall reconstruction. This paper takes a multi-story office building in Yichun city as an example of a severely cold region building and analyzes the annual energy consumption of three different materials' external thermal insulation systems, applying the whole life cycle method to simultaneously determine the most economic thickness of the insulating layer of the different thermal insulation systems. The findings provide methods and data references for designers.
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在链接到云南高校图书馆文献保障联盟下载...
云南高校图书馆联盟文献共享服务平台 版权所有©
您的IP:216.73.216.166