[1] 董玮. 湿热气候区建筑复合表皮遮阳构件设计方法探索[D]. 广州:华南理工大学, 2010. DONG Wei. Research on shade component design of architecture’s composite skin in hot and humid climate district [D]. Guangzhou: South China University of Technology, 2010.
[2] 周孝清, 刘芳, 陈伟青. 广州公共建筑能耗调查及研究[J].建筑科学, 2007, 23(12):76-80.
ZHOU Xiaoqing, LIU Fang, CHEN Weiqing. Investigation and study on energy consumption of public buildings in Guangzhou[J]. Building Science, 2007, 23(12): 76-80.
[3] 杨柳. 建筑气候分析与设计策略研究[D].西安: 西安建筑科技大学, 2003.
YANG Liu. Climatic analysis and architectural design strategies for bio-climatic design [D]. Xi′an: Xi′an Univ. of Arch. & Tech., 2003.
[4] 李愉. 应对气候的建筑设计[D].重庆: 重庆大学, 2006.
LI Yu. Architecture design with climate [D]. Chongqing: Chongqing University, 2006.
[5] 汤莉. 我国湿热地区传统聚落气候设计策略数值模拟研究[D].长沙:中南大学, 2013.
TANG Li. Numerical simulation of the bioclimatic design strategies in historic settlements in Chinese hot-humid region [D].Changsha: Central South University, 2013.
[6] MANDALAKI M, ZERVAS K, TSOUTSOS T, et al. Assessment of fixed shading devices with integrated PV for efficient energy use[J].Sol Energy, 2012, 86(9): 2561- 2575.
[7] NIKOOFARD S, UGURSAL V I, BEAUSOLEIL Mor rison. Effect of external shading on household energy requirement for heating and cooling in Canada [J]. Energy Build, 2011,43: 1627-1635.
[8] CHAN A L S. Effect of adjacent shading on the thermal performance of residential buildings in a subtropical region [J]. Appl Energy, 2012, 92(2): 516-522.
[9] OUEDRAOGO B I, LEVERMORE G J, PARKINSON J B. Future energy demand for public buildings in the context of climate change for Burkina Faso [J]. Building and Environment, 2012 , 49(3): 270-282.
[10] ELVIS Wati, PIERRE Meukam, MODESTE K. Influence of external shading on optimum insulation thickness of building walls in a tropical region [J]. Applied Thermal Engineering, 2015, 90(5): 754-762.
[11] 寇扬. 长江中下游地区建筑外围护结构遮阳策略研究[D].武汉: 华中科技大学,2011.
KOU Yang. The study on the sun-shading measures of building envelope in middle-lower reaches of the Yangtze river region [D].Wuhan:Huazhong University of Science & Technology, 2011.
[12] 冯林东. 适宜夏热冬暖地区的建筑遮阳技术研究[D].西安: 西安建筑科技大学,2008.
FENG Lindong. Study on appropriate building shading technology in hot summer and warm winter zone [D]. Xi′an: Xi′an Univ. of Arch. & Tech., 2008.
[13] 陈勇明. 夏热冬暖地区建筑外遮阳与建筑一体化设计研究[D].重庆: 重庆大学,2014.
CHEN Yongming. The research on integrated design of exterior shading and building in hot summer and warm winter areas[D].Chongqing: Chongqing University,2014.
[14] HABERL J S, CHO S, HABERL J S, et al. Literature review of uncertainty of analysis methods (cool roofs), report to the Texas commission on environmental quality [R]. Texas A & M University, 2004.
[15] LEVINSON R, BERDAHL P, BERHE A. Effects of soiling and cleaning on the reflectance and solar heat gain of a light-colored roofing membrane [J]. Journal of Atmospheric Environment. 2005, 39(40): 7807-7824.
[16] AKBARI H, KONOPACKI S. Calculating energy saving potentials from heat island reduction strategies [J]. Energy Policy, 2005, 33(6): 751-756.
[17] GUO W, QIAO X, HUANG Y, et al. Study on energy saving effect of heat-reflective insulation coating on envelopes in the hot summer and cold winter zone [J]. Energy and Buildings, 2012, 50(7):196-203.
[18] SHEN Hui, TAN Hongwei, ATHANASIOS Tzempelikos. The effect of reflective coatings on building surface temperatures, indoor environment and energy consumption—An experimental study [J]. Energy and Buildings, 2011, 43(s2/3): 573-580.
[19] 李宁. 建筑玻璃隔热涂料研究[D]. 广州:华南理工大学, 2010.
LI Ning. Research on building glass thermal insulated pain [D]. Guangzhou: South China University of Technology, 2010.
[20] 李宁, 孟庆林, 张楠. 建筑热反射涂料现场反射率检测研究[J]. 建筑技术, 2013,44(7):614-616.
LI Ning, MENG Qinglin, ZHANG Nan. Inspection and research on site reflectivity of heat reflection coating for building[J]. Architecture Technology, 2013,44 (7): 614- 616.
[21] STERNBERG T. Evaluating the role of ivy (Hereda helix) in moderating wall surface microclimates and contributing to the bioprotection of historic buildings [J]. Build Environ, 2011, 46(2):293-297.
[22] WONG N H. Energy simulation of vertical greenery systems [J]. Energy Build, 2009,41(12): 1401-1408.
[23] JAFFAL I, OULDBOUKHITINE S E, BELARBI R. A comprehensive study of the impact of green roofs on building energy performance [J]. Renewable Energy, 2012, 43: 157-164.
[24] FENG C, MENG Q, ZHANG Y. Theoretical and experimental analysis of the energy balance of extensive green roofs [J]. Energy Build, 2010, 42(6): 959-965.
[25] BAIK Jongjin, KWAK Kyunghwan, PARK Seungbu, et al. Effects of building roof greening on air quality in street canyons [J]. Atmospheric Environment, 2012, 61 (12): 48-55.
[26] EDWARD NG, CHEN Liang, WANG Yingna, et al. A study on the cooling effects of greening in a high-density city: An experience from Hong Kong [J]. Building and Environment, 2012, 47(1): 256-271.
[27] MANAT Srivanit, KAZUNORI Hokao. Evaluating the cooling effects of greening for improving the outdoor thermal environment at an institutional campus in the summer [J].Building and Environment,2013,66(4):158- 172.
[28] DONALD Watston, ALAN Plattus, ROBERT G. Shibley. Time-Saver Standards for Urban Design[M]. New York: McGraw-Hill, 2001:7-11.
[29] GEROS V, SANTAMOURIS M, TSANGRASOULIS A, et al. Experimental evaluation of night ventilation phenomena [J].Energy and Buildings, 1999, 29(2) :141-154.
[30] SHAVIV E, YEZIORO A, CAPELUTO I G. Thermal mass and night ventilation as passive cooling design strategy [J]. Renewable Energy, 2001, 24 (3/4):445-452.
[31] CONNOLLY D. Sensitivity analysis of a maritime located night ventilated library building [J]. Solar Energy, 2007, 81 (6):697-710.
[32] LEILA Moosavi, NORHAYATI Mahyuddin, NORAFIDA Ab Ghafar, et al. Thermal performance of atria: An overview of natural ventilation effective designs [J]. Renewable and Sustainable Energy Reviews, 2014, 34: 654-670.
[33] GIVONI B. Comfort, climate analysis and building design guidelines[J].Energy and Buildings,1992,18(1): 11- 23
[34] ARTMANN N, MANZ H, HEISELBERG P. Climatic potential for passive cooling of buildings by night-time ventilation in Europe [J]. Applied Energy, 2007, 84(2): 187-201.
[35] 张国强, 阳丽娜, 周军莉, 等.自然通风潜力评估体系的建立与应用[J]. 湖南大学学报(自然科学版), 2006, 33(1):25-28.
ZHANG Guoqiang, YANG Lina, ZHOU Junli, et al. Development and application of natural ventilation potential evaluation system [J]. Journal of Hunan University (Natural Sciences Edition), 2006, 33(1):25-28.
[36] 亓晓琳, 杨柳, 刘加平. 北方地区办公建筑夜间通风适用性分析[J]. 太阳能学报,2011,32(5):669-673.
QI Xiaolin, YANG Liu, LIU Jiaping. the applicability of night ventilation on office building in north china [J].Acta Energiae Solaris Sinica, 2011,32(5):669-673.
[37] WANG L, WONG N H. The impacts of ventilation strategies and facade on indoor thermal environment for naturally ventilated residential buildings in Singapore [J]. Building and Environment, 2007,42(12): 4006-4015.
[38] 李百战, 庄春龙, 邓安仲, 等.相变墙体与夜间通风改善轻质建筑室内热环境[J].土木建筑与环境工程, 2009, 31(3): 109-113.
LI Baizhan, ZHUANG Chunlong, DENG Anzhong, et al. Improvement of indoor thermal environment in light weight building combining phase change material wall and night ventilation [J]. Journal of Civil, Architectural & Environmental Engineering, 2009, 31(3): 109-113.
[39] 陈士凌, 卢军, 李永财. 太阳能相变蓄能通风系统实验研究[J]. 土木建筑与环境工程,2011,33(2): 97-100,111.
CHEN Shiling, LU Jun, LI Yongcai. Experimental analysis of solar energy combined with phase-change energy storage ventilation system [J]. Journal of Civil, Architectural Environmental Engineering, 2011,33(2):97-100,111.
[40] ELMUALIM A. Integrated building management systems for sustainable technologies: Design aspiration and operational shortcoming [C]//1st International Conference on Sustainability in Energy and Buildings. 2009: 275-280.
[41] ARADAG S, BAYE O, KARATAS C, et al. Hybrid ventilation system simulation for several cities in Turkey [J]. International Journal of Ventilation, 2011, 9(4):351- 357.
[42] ZHANG Rongpeng, NIE Yisu, LAM Khee Poh, et al. Dynamic optimization based integrated operation strategy design for passive cooling ventilation and active building air conditioning [J]. Energy and Buildings, 2014, 85(85): 126-135.
[43] DEHGHANI sanij, SOLTANI M, RAAHEMIFAR K. A new design of wind tower for passive ventilation in buildings to reduce energy consumption in windy regions [J].Renewable and Sustainable Energy Reviews, 2015,42: 182-195.
[44] DOMINIC O’Connor, JOHN Kaiser Calautit, BEN Richard Hughes. A study of passive ventilation integrated with heat recovery [J].Energy and Buildings, 2014, 82:799- 811.
[45] RAKESH Khanal, LEI Chengwang. A numerical investigation of buoyancy induced turbulent air flow in an inclined passive wall solar chimney for natural ventilation [J]. Energy and Buildings, 2015,93(2): 217-226.
[46] KUBOTA T, HOOI Chyee D T, AHMAD S. The effects of night ventilation technique on indoor thermal environment for residential buildings in hot-humid climate of Malaysia[J].Energy and Buildings, 2009, 41(8): 829- 839.
[47] CHAN S C, CHE-ANI A I, NIK Ibrahim N L. Passive designs in sustaining natural ventilation in school office buildings in Seremban, Malaysia [J]. International Journal of Sustainable Built Environment, 2013,2(2):172- 182.
[48] KRÜGER E, GONZÁLEZ E, GIVONI B. Effectiveness of indirect evaporative cooling and thermal mass in a hot arid climate [J]. Build Environment, 2010,45(6): 1422- 1433.
[49] EDUARDO González Cruz, EDUARDO Krüger. Evaluating the potential of an indirect evaporative passive cooling system for Brazilian dwellings [J]. Building and Environment, 2015,87: 265-273.
[50] ZHANG Lei, FENG Yanshan, MENG Qinglin, et al. Experimental study on the building evaporative cooling by using the Climatic Wind Tunnel [J]. Energy and Buildings, 2015,104: 360-368.
[51] KARAMANIS D, KYRITSI E, KRIMPALIS S. Well-ordered nanoporous materials for low-temperature water phase changes and solar evaporative cooling [J]. Solar Energy Materials and Solar Cells, 2015,139: 34-43.
[52] SABA Saneinejad, PETER Moonen, THIJS Defraeye, et al. Coupled CFD, radiation and porous media transport model for evaluating evaporative cooling in an urbanenvironment [J]. Journal of Wind Engineering and Industrial Aerodynamics, 2012,s104/106(3): 455-463.
[53] OLIVEIRA J T, HAGISHIMA A, TANIMOTO J. Estimation of passive cooling efficiency for environmental design in Brazil [J]. Energy Build. 2009, 41(8):809-813.
[54] PIRES L, SILVA P D, CASTRO Gomes J P. Performance of textile and building materials for a particular evaporative cooling purpose [J]. Experimental Thermal & Fluid Science. 2011, 35(4):670-675.
[55] 黄翔, 范影, 狄育慧. 用于墙体表面的多孔调湿材料实验研究[J].西安工程科技学院学报,2006,20(6):731- 734.
HUANG Xiang, FAN Ying, DI Yuhui. Experimental study on porosity moisture-conditioned material used on building envelope[J]. Journal of Xi′an University of Engineering Science and Technology, 2006, 20(6): 731-734.
[56] HE Jiang. A design supporting simulation system for predicting and evaluating the cool microclimate creating effect of passive evaporative cooling walls [J]. Building and Environment, 2011, 46(3): 584-596.
[57] KOSSECKA M, KOSNY J. Influence of insulation configuration on heating and cooling loads in a continuously used buildings [J]. Energy and Buildings, 2002, 34(4): 321- 331.
[58] WILHELM A F, KAMBIZ R T, HENDAWIB A, et al. Wall insulation measures for residential villas in Dubai: a case study in energy efficiency [J]. Energy and Buildings, 2012,44: 26-32.
[59] ELISABETH K, JAN K. Influence of insulation configuration on heating and cooling loads in a continuously used building [J]. Energy and Building, 2002, 34(4): 321- 331.
[60] NICCOLO A, ADRIANA A, MICHELA B. The influence of the external walls thermal inertia on the energy performance of well insulated buildings [J]. Energy and Buildings, 2009,41(11): 1181-1187.
[61] NAOUEL D. A study on optimum insulation thickness in walls and energy savings in Tunisian buildings based on analytical calculation of cooling and heating transmission loads [J]. Appl Energy, 2011,88(1):156-164.
[62] SUBHASH Mi, USMANI J A, BHAGMAN S. Study on energy saving in residential building using life cycle cost analysis [J]. Int J Eng Math Sci, 2013(4):8-17.
[63] MOGHIMI S, BAKHTYAR B, AZIZPOUR F, et al. Maximization of energy saving and minimization of insulation cost in a tropical hospital: a case study in Malaysia [J]. WSEAS Trans Environ Dev, 2013 (9):105-115.
[64] 白贵平,冀兆良. 围护结构隔热对室内热稳定及空调负荷的影响[J]. 建筑热能通风空调,2005,24(1):69-72.
BAI GuiPing, JI Zhaolaing. The effects of thermal insulation formon thermal stability and the cooling load of air conditioning[J].Building Energy and Environment, 2005, 24 (1): 69-72.
[65] 窦枚. 金属夹芯轻质绝热围护结构热湿功能研究[D].重庆: 重庆大学,2013.
DOU Mei. Study on performance of heat and moisture in light metal insulating sandwich building envelope [D]. Chongqing: Chongqing University, 2013.
[66] BRITO Filho, HENRIQUEZ J R, DUTRA J C. Effects of coefficients of solar reflectivity and infrared emissivity on the temperature and heat flux of horizontal flat roofs of artificially conditioned nonresidential buildings [J]. Energy and Buildings, 2011,43(s2/3): 440-445.
[67] SPROUL J, WAN M P, MANDEL B H, et al. Economic comparison of white, green, and black flat roofs in the United States [J]. Energy and Buildings, 2014, 71(3): 20- 27.
[68] SANTAMOURIS M. Cooling the cities – a review of reflective and green roof mitigation technologies to fight heat island and improve comfort in urban environments [J]. Solar Energy, 2014,103: 682-703.
[69] ROSADO P J, FAULKNER D, SULLIVAN D P. Measured temperature reductions and energy savings from a cool tile roof on a central California home [J]. Energy and Buildings, 2014,80: 57-71.
[70] ROSENFELD A H, AKBARI H, BRETZ S, et al. Mitigation of urban heat islands: materials, utility programs, updates [J]. Energy and Buildings, 1995,22(3): 255-265.
[71] PARKER D S, BARKASZI S F. Roof solar reflectance and cooling energy use: field research results from Florida [J]. Energy and Buildings, 1997,25(2):105-115.
[72] 唐鸣放,杨真静,郑开丽. 屋顶绿化隔热等效热阻[J]. 重庆大学学报(自然科学版),2007,30(5):1-3.
TANG Mingfang, YANG Zhenjing, ZHENG Kaili. Thermal R-values of green roof [J]. Journal of Chongqing University(Natural Sciences edition), 2007,30(5):1-3.
[73] AMINE Allouhi, TARIK Kousksou. Economic and environmental assessment of solar air-conditioning systems in Morocco [J]. Renewable and Sustainable Energy Reviews, 2015,50: 770-781.
[74] BANIYOUNES A M, RASUL M G, KHAN M K. Assessment of solar assisted air conditioning in Central Queensland’s subtropical climate, Australia [J]. Renewable Energy, 2013,50: 334-341.
[75] 李永华, 袁超, 蒲亮. 屋顶式太阳能光伏发电系统经济性分析[J]. 电力科学与工程,2013,29(9):29-33.
LI Yonghua, YUAN Chao, PU Liang. Economic analysis in rooftop solar photovoltaic generation system [J]. Electric Power Science and Engineering, 2013, 29(9):29-33.
[76] EBRAHIM Solgi, RIMA Fayaz, BEHROUZ Mohammad Kari. Cooling load reduction in office buildings of hot-arid climate, combining phase change materials and night purge ventilation [J]. Renewable Energy, 2015, 85: 725-731.
[77] ALEXANDER M, ASTRID Jamet, GAURAV Sant, et al. Annual energy analysis of concrete containing phase change materials for building envelopes [J]. Energy Conversion and Management, 2015,103: 374-386.
[78] SHI X, MEMON S A, TANG W C, et al. Experimental assessment of position of macro encapsulated phase change material in concrete walls on indoor temperatures and humidity levels [J]. Energy Build, 2014,71(3):80-87.
[79] 孔祥飞. 相变蓄冷建筑围护结构性能研究[D].天津: 天津大学, 2013.
KONG Xiangfei. Study on the performance of phase change material combined with building envelop for cold storage[D]. Tianjin: Tianjin University, 2013.