参考文献/References:
[1]中国建筑节能协会.中国建筑能耗研究报告2020[J]. 建筑节能(中英文), 2021,49(2):1-6.
China Association of Building Energy Efficiency. China building energy consumption research report 2020[J]. Building Energy Efficiency, 2021,49(2):1-6.
[2]ESBENSEN Torben V,KORSGAARD Vagn. Dimensioning of the solar heating system in the zero energy house in Denmark[J]. Solar Energy,1977,19(2):195-199.
[3]STAHL W,VOSS K,GOETZBERGER A. The self-sufficient solar house in Freiburg[J]. Solar Energy,1994,52(1):111-125.
[4]JÜRGEN Schnieders,WOLFGANG Feist,LUDWIG Rongen. Passive houses for different climate zones[J]. Energy & Buildings,2015,105.
[5]SUN Yongjun. Sensitivity analysis of macro-parameters in the system design of net zero energy building[J]. Energy & Buildings,2015,86.
[6]中国建筑科学研究院有限公司,河北省建筑科学研究院.近零能耗建筑技术标准:GB/T 51350—2019[S].北京:中国建筑出版社,2019:5-14.
China Academy of Building Research,Hebei Academy of Building Research. Technical standard for nearly zero energy buildings:GB/T 51350—2019[S].Beijing:China Architecture & Building Press,2019:5-14.
[7]中国建筑科学研究院有限公司. 中国超低/近零能耗建筑最佳实践案例集[R]. 北京: 中国 建筑节能协会被动式超低能耗建筑分会, 2017
China Academy of Building Research. Nearly zero energy building collection [R]. Beijing: China Passive Building Alliance, 2017
[8]姜雷,胡忆南.苏南村镇近零能耗住宅性能指标研究[J/OL].工业建筑:1-11[2022-11-01]. https://kns.cnki.net/kcms/detail/11.2068.tu.20220629.1807.002.html
JIANG Lei, HU Yinan. Study on performance index of near-zero energy consumption residence in towns of southern Jiangsu province [J/OL]. Industrial Construction:1-11[2022-11-01]. https://kns.cnki.net/kcms/detail/11.2068.tu.20220629.1807.002.html.
[9]王志刚,祝秀娟,周蕾,等.山地新闻中心近零能耗建筑分析与设计[J].暖通空调,2022,52(6):105-110.
WANG Zhigang, ZHU Xiujuan, ZHOU Lei, et al. Analysis and design of near-zero building for Mountain News Center[J]. Heating Ventilating & Air Conditioning,2022,52(6):105-110.
[10]高彩凤,陈梦源,彭莉,等.近零能耗公共建筑技术经济性分析[J].建筑科学,2021,37(10):170-178.
GAO Caifeng,CHEN Mengyuan, PENG Li, et al. Techno-economic analysis of nearly zero energy public buildings[J]. Building Science,2021,37(10):170-178.
[11]李怀,于震,吴剑林,等.某近零能耗办公建筑4年运行能耗数据分析[J].建筑科学,2021,37(4):1-8.
LI Huai, YU Zhen, WU Jianlin, et al. Analysis of four-year energy consumption data of a nearly zero energy office building in four years[J]. Building Science,2021,37(4):1-8.
[12]李文涛,刘衍,杨柳,等.近零能耗居住建筑供冷年耗冷量指标分析研究[J].暖通空调,2022,52(8):120-126.
LI Wentao, LIU Yan, YANG Liu, et al. Analysis and study of annual cooling consumption indicator of nearly zero energy residential buildings [J]. Building Science,2022,52(8):120-126.
[13]冯国会,李奇岩,王刚,等.基于DeST仿真和GS-SVR算法对严寒气候区近零能耗公共建筑逐时负荷预测[J].沈阳建筑大学学报(自然科学版),2022,38(1):149-155.
FENG Guohui, LI Qiyan, WANG Gang, et al. Hourly load forecast of nZEB in severe cold area based on DeST simulation and GS-SVR algorithm[J]. Journal of Shenyang Jianzhu University(Natural Science),2022,38(1):149-155.
[14]李晓萍,李宝伟,王国慧,等.基于多目标优化的严寒地区近零能耗建筑适用技术研究[J].建筑节能,2020,48(11):63-66, 134.
LI Xiaoping, LI Baowei, WANG Guohui, et al. Application technologies of nearly zero energy building in severe cold zone based on multi-objective optimization method [J]. Building Energy Efficiency,2020,48(11):63-66, 134.
[15]刘少亮,强万明,张振,等.严寒地区近零能耗建筑非透明围护结构经济敏感度分析[J].建筑技术,2020,51(11):1385-1388.
LIU Shaoliang, QIANG Wanming,ZHANG Zhen, et al. Economic sensitivity analysis of non-transparent enclosure structure of nearly zero energy buildings in severe cold zones[J]. Architecture Technology,2020,51(11):1385-1388.
[16]余镇雨,路菲,邹瑜,等.基于模拟的多目标优化方法在近零能耗建筑性能优化设计中的应用[J].建筑科学,2019,35(10):8-15.
YU Zhenyu, LU Fei, ZOU Yu, et al. A simulation-based multi-objective optimization approach for design of nearly zero energy buildings [J]. Building Science,2019,35(10):8-15.
[17]董晓亚,李德英,王艺霖.近零能耗办公建筑外墙保温材料厚度优化研究[J].新型建筑材料,2020,47(7):143-146,151.
DONG Xiaoya, LI Deying, WANG Yilin. Research on thickness optimization of exterior wall insulation material of near-zero energy office building[J]. New Building Materials,2020,47(7):143-146,151.
[18]张文,聂金哲.新风热回收系统在我国不同气候区典型建筑中的适用性研究[J].建筑科学,2022,38(8):194-200.
ZHANG Wen, NIE Jinzhe. Study on applicability of heat recovery ventilation system in typical buildings in different climate regions of China [J]. Building Science,2022,38(8):194-200.
[19]房涛,李洁,王崇杰,等.太阳辐射得热影响下的近零能耗住宅体形设计研究[J].西安建筑科技大学学报(自然科学版),2020,52(2):287-295.
FANG Tao, LI Jie, WANG Chongjie, et al. Form design of nearly zero energy residence due to solar heat gains [J]. J. of Xi'an Univ. of Arch. & Tech.(Natural Science Edition),2020,52(2):287-295.
[20]林正豪,宋晔皓.近零能耗轻质装配式建筑的板缝气密性优化设计研究[J].建筑节能,2022,50(6):52-58,78.
LIN Zhenhao, SONG Yeahao. Optimized design of panel joints air-tightness for nearly zero energy lightweight prefabricated building[J]. Building Energy Efficiency,2022,50(6):52-58,78.
[21]孙大明,周海珠,田慧峰.建筑热桥研究现状与展望[J].建筑科学,2010,26(2):128-134.
SUN Daming, ZHOU Haizhu, TIAN Huifeng. Research status and prospect of building thermal bridge[J]. Building Science,2010,26(2):128-134.
[22]彭莉,潘玉亮,沈宏伟等.超低能耗居住建筑热桥数值模拟研究[J].建筑科学,2022,38(6):197-205.
PENG Li, PAN Yuliang,SHEN Hongwei, et al. Numerical simulation of thermal bridge for ultra low energy residentials buildings[J]. Building Science,2022,38(6):197-205.
[23]刘少亮.线性热桥对超低能耗建筑和传统节能建筑的热工影响对比分析[J].建筑技术,2021,52(4):396-399.
LIU Shaoliang. Thermal effect analysis of linear thermal bridge on ultra-low energy consumption building and traditional energy saving building [J]. Architecture Technology,2021,52(4):396-399.
[24]中华人民共和国住房和城乡建设部. 建筑物气密性测定方法风扇压力法:GB/T 34010-2017[S].北京:中国标准出版社,2017:7-12.
Ministry of Housing and Urban-Rural Development of the people's Republic of China. Standard for determination of air permeability of buildings—Fan pressurization method: GB/T 34010-2017[S].Beijing: Standards Press of China.2017:7-12.