Energy-Efficient Design of Super High-Rise Building in Hot Summer and Cold Winter Zone

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With advances in technology and development, it has become very important to raise the citys land resource utilization. Super high-rise building is not only save the land, but also destruct the living environment. According to the climatic characteristics and geographical position of Hot Summer and Cold Winter, present situation of energy-saving in super high-rise buildings, this paper analyses energy-efficient design strategy of super high-rise building from natural ventilation, and energy efficiency of building envelope and renewable green space.

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408-413

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August 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Meng Qinglin . Energy conservation must be valued in super high-rise building, Guangdong Construction Information. 2006 (7).

Google Scholar

[2] Dun Yuanqin , Xue ming , Sustainable development consciousness and high-rise buildings[J], Building Science, 2000(2).

Google Scholar

[3] Qu Wanying , GE Cui- yu , CHEN Juan, Analysis on Technology and Economy of Energy Efficient Wall in Hot Summer and Cold Winter Zone, Prpceedings of the International Workshop on Modern Science and Technology in 2006 , CHINA SCIENCE AND TECHNOLOGY PRESS, 2006. 04.

Google Scholar

[4] Qu Wanying , Eco-energy-efficient Design of Ultra-high-rise Building in Wuhan. Building energy effiency. 2010(11).

Google Scholar

[5] http: /www. whcbd. com.

Google Scholar

[6] http: /news. jschina. com. cn/system/2011/06/23/011073682. shtml.

Google Scholar

[7] http: /english. wh. gov. cn/publish/english/category/72/1201204161612120002. html.

Google Scholar

[8] Andy Walker. Natural ventilation. National Renewable Energy Laboratory. 06-15-2010 http: /www. wbdg. org/resources/naturalventilation. php.

Google Scholar

[9] Rob Bolin, PE . Sustainability of the Building Envelope. Syska Hennessy Group: 12-14-2009 http: /www. wbdg. org/resources/env_sustainability. php.

Google Scholar

[10] Kuei-Feng Chang , Po-Cheng Chou, Measuring the influence of the greening design of the building environment on the urban real estate market in Taiwan. Building and Environment 45(2010)2057-(2067).

DOI: 10.1016/j.buildenv.2010.02.013

Google Scholar

[11] CAI Li-min, SUN Da-ming, WANG You-wei. Discussion of Building Vertical Greening. Urban Environment & Urban Ecology: 2009. 02.

Google Scholar

[12] YAO Min-juan , QI Zhi-xin, Roof Greening of the House, 《Shaanxi Forest Science and Technology》 2011-06.

Google Scholar

[13] XU He  QU Zhi . Structure of Roof Greening in Beijing . 《Chinese Landscape Architecture》2006(4)77-80.

Google Scholar

[14] 2009 China (Shanghai) International Roof greening &Three-dimensional greening Exhibition. http: /www. greenrooftops. cn/news/20090403/06a0694c175e49cdd11f37a0af9a3361. html.

Google Scholar

[15] Gao Lixin , Lu Yajun, Fuzzy Optimization of Air-conditioning System's Cooling and Heating Source, 《Building Energy & Environment》 2001(6).

Google Scholar

[16] CHEN Hao, The Equipment Selection and Economic Analysis for Central Refrigeration Cooling and Heating Energy Station in High-rise Building. 《Group Technology & Production Modernization》 2003(2).

Google Scholar