Ren Qianlan, Shen Chunhong, Chen Peng. EXPLORING METHOD OF STRUCTURE ENERGY-SAVING IN ROOF IN HOT SUMMER AND COLD WINTER AREA[J]. INDUSTRIAL CONSTRUCTION, 2007, 37(5): 37-40. doi: 10.13204/j.gyjz200705010
Citation:
Wang Cuixia, Zhang Aijun, Zhang Xiaodan. ANALYSIS OF PROSPECTS OF USING STRAW-BALES FOR RURAL DWELLINGS IN NORTH HENAN[J]. INDUSTRIAL CONSTRUCTION , 2010, 40(11): 39-42. doi: 10.13204/j.gyjz201011011
Ren Qianlan, Shen Chunhong, Chen Peng. EXPLORING METHOD OF STRUCTURE ENERGY-SAVING IN ROOF IN HOT SUMMER AND COLD WINTER AREA[J]. INDUSTRIAL CONSTRUCTION, 2007, 37(5): 37-40. doi: 10.13204/j.gyjz200705010
Citation:
Wang Cuixia, Zhang Aijun, Zhang Xiaodan. ANALYSIS OF PROSPECTS OF USING STRAW-BALES FOR RURAL DWELLINGS IN NORTH HENAN[J]. INDUSTRIAL CONSTRUCTION , 2010, 40(11): 39-42. doi: 10.13204/j.gyjz201011011
ANALYSIS OF PROSPECTS OF USING STRAW-BALES FOR RURAL DWELLINGS IN NORTH HENAN
1.
College of Water Resources and Architectural Engineering,Northwest A&F University,Yangling 712100,China
Received Date: 2010-06-30
Publish Date:
2010-11-20
Abstract
Solid clay bricks as the main building material were widely used in the rural dwellings in North Henan Province,but their production process destroys the land seriously and their energy consumption is so large,so there is a new research direction to find a new building material to take the place of solid clay bricks.In this paper,the straw bale is analyzed in terms of raw materials,thermal properties,environmental protection,manufacturing energy consumption etc,and the the prospects of straw-bales in the rural dwellings in North Henan is analyzed in combination with other energy-saving technologies.In the end,it is concluded that straw-bale building is a energy-efficient building along with benefits of society,economy and environment and has good application prospects in the rural dwellings in North Henan Province.
References
[2] 何梅.独立式住宅围护结构的热工设计[J].西安建筑科技大学学报,2002,9(3):1-3.
GB 5017693 民用建筑热工设计规范[S].
[3] 崔瑞臣,张舒,彭岩.草砖房建设在我国东北地区的应用[J].小城镇建设,2001(12):90.
[4] 刘伯权,田苗,刘鸣.草砖建筑的节能性分析及其在西北地区的应用前景[J].工业建筑,2007,37(3):17-19.
[5] 王婧,张旭.草砖住宅的建筑节能性分析[J].建筑材料学报,2005,8(1):109-112.
[6] Kelly Lerner,Paul Lacinski.Straw Bale Training China.ManualPrepared for the Adventist Development and Relief Agency,2002.
[7] 邸芃,吕秀,罗静.生态草砖建筑节能技术研究[J].西安建筑科技大学学报,2008,28(4):643-646.
[8] 李玲,李俊鸽,杜高潮.寒冷地区乡村住宅外围护结构节能设计[J].住宅科技,2006(7):29-31.
Relative Articles
[1] HAN Zhifan, WANG Xin. Optimal Design of MTMD Vertical Vibration-Reduction for Horizontal Structures Based on the Combination of Optimal Parameters [J]. INDUSTRIAL CONSTRUCTION, 2024, 54(4): 46-53. doi: 10.3724/j.gyjzG23061103
[2] LIN Shuchao, FAN Guangli, KANG Jinjun, ZHOU Yijun. OPTIMIZATION DESIGN AND FEM VERIFICATION OF VARIABLE CURVATURE-FRICTION PENDULUM SYSTEMS [J]. INDUSTRIAL CONSTRUCTION, 2021, 51(3): 128-135. doi: 10.13204/j.gyjz201906030005
[3] ZHOU Yiyi, SHU Zhan, ZHOU Changfeng, JIA LiangJiu. DESIGN AND OPTIMIZATION OF NEGATIVE POISSON'S RATIO OF ENERGY CONSUMPTION STEEL PLATE BASED ON INTELLIGENT CONSTRUCTION [J]. INDUSTRIAL CONSTRUCTION, 2020, 50(2): 137-142,157. doi: 10.13204/j.gyjz202002021
[4] Lin Xiangen. COMPARISON OF RELEVANT CHARACTERISTICS OF OPTIMIZED PORTAL FRAME WITH TRADITIONAL DESIGN AND A CHOICE OF SEVERAL REASONABLE DESIGN PARAMETERS [J]. INDUSTRIAL CONSTRUCTION, 2013, 43(7): 135-138. doi: 10.13204/j.gyjz201307030
[5] Zhang Yin, Lu Junlong, Huang Wei, Zhang Weifeng, Tian Jie. ANALYSIS OF OPTIMUM DESIGN OF PILE-RAFT FOUNDATION OF ECOLOGICAL COMPOSITE WALL STRUCTRUE [J]. INDUSTRIAL CONSTRUCTION, 2012, 42(8): 37-40,11. doi: 10.13204/j.gyjz201208008
[6] Li Junfeng, Xu Yan, Yang Xiaodong. OPTIMIZATION DESIGN OF HIGH-RISE SHEAR WALL STRUCTURE WITH STAGGERED STORIES [J]. INDUSTRIAL CONSTRUCTION, 2012, 42(12): 151-155. doi: 10.13204/j.gyjz201212033
[7] Xie Jian, He Fei. OPTIMIZATION DESIGN ON THE ROOF OF LARGE LNG TANK [J]. INDUSTRIAL CONSTRUCTION, 2012, 42(4): 78-81,98. doi: 10.13204/j.gyjz201204017
[8] Qiang Yue, He Jian, He Yunxiang, Ge Xinguang, Li Chuangdi, Wu Hengbin. OPTIMAL DESIGN OF WIND-INDUCED VIBRATION STRUCTRURE WITH TMD DEVICES BASED ON IMPROVED GENETIC ALGORITHM [J]. INDUSTRIAL CONSTRUCTION, 2011, 41(5): 84-87. doi: 10.13204/j.gyjz201105019
[9] Cui Yanqi. ANALYSIS OF ENERGY-SAVING IN THE RURAL HOUSING CONSTRUCTION [J]. INDUSTRIAL CONSTRUCTION, 2010, 40(8): 61-63. doi: 10.13204/j.gyjz201008014
[10] Yin Yue, Chen Zhihua, Li Shun, You Qizhi, Wang Yifeng. OPTIMUM DESIGN RESEARCH ON STEEL FRAME PRE-HEATER TOWER OF CEMENT KILN [J]. INDUSTRIAL CONSTRUCTION, 2008, 38(5): 109-112. doi: 10.13204/j.gyjz200805026
[11] Lin Xiangen, Sheng Ermai. OPTIMAL DESIGN OF PORTAL FRAME UTILIZING PENALTY FUNCTION [J]. INDUSTRIAL CONSTRUCTION, 2008, 38(8): 86-88. doi: 10.13204/j.gyjz200808022
[12] Sui Jieli, Wang Shaoling, Jia Zhilin. DISCUSSION ON OPTIMIZATION DESIGN OF HOUSES IN SOCIALIST NEW RURALITY BASED ON THE CONCEPT OF ENERGY-SAVING AND POLLUTANT REDUCTION [J]. INDUSTRIAL CONSTRUCTION, 2008, 38(7): 128-130. doi: 10.13204/j.gyjz200807032
[13] Zong Gang, Lou Menglin. AN APPLICABLE OPTIMAL DESIGN METHOD OF TUNED LIQUID DAMPERS FOR MULTI-MODE CONTROL [J]. INDUSTRIAL CONSTRUCTION, 2007, 37(2): 32-36,31. doi: 10.13204/j.gyjz200702008
[14] Yang Zi-jiang. SUITABLE ENERGY-CONSERVING MEASURES FOR THE HOUSE ROOFING OF VILLAGES AND SMALL TOWNS IN HUBEI [J]. INDUSTRIAL CONSTRUCTION, 2007, 37(12): 58-60. doi: 10.13204/j.gyjz200712014
[15] Wang Fa-wu, Tang Gan, Yang Jie. OPTIMAL LATERAL DEFLECTION DESIGN OF TALL BUILDINGS OF FRAMES AND SHEAR WALLS [J]. INDUSTRIAL CONSTRUCTION, 2006, 36(6): 38-42. doi: 10.13204/j.gyjz200606013
[16] Wu Bilong, Li Ying. CONSIDERATION ON DESIGN OF ENERGY CONSERVATION IN BUILDING BASED ON EXPERIENCE FROM GERMANY [J]. INDUSTRIAL CONSTRUCTION, 2006, 36(9): 104-105.
[17] Zhang Jingjing. OPTIMIZATION DESIGN OF SECTIONAL HEIGHT OF CONTINUOUS BEAM OF REINFORCED CONCRETE [J]. INDUSTRIAL CONSTRUCTION, 2005, 35(11): 50-52,13. doi: 10.13204/j.gyjz200511015
[18] Zhang Jingjing. OPTIMIZATION DESIGN FOR NORMAL SECTION OF REINFORCED CONCRETE FLEXURAL MEMBERS [J]. INDUSTRIAL CONSTRUCTION, 2005, 35(2): 100-102. doi: 10.13204/j.gyjz200502028
[19] Chen Mingzhong, Zhou Chenghui. ANALYSIS OF OPTIMUM DESIGN FOR PILED RAFT FOUNDATION [J]. INDUSTRIAL CONSTRUCTION, 2004, 34(7): 36-39. doi: 10.13204/j.gyjz200407010
[20] Ma Quanming. DEVELOPMENT AND UTILIZATION OF ROOF'S ECOLOGICAL FUNCTIONS [J]. INDUSTRIAL CONSTRUCTION, 2004, 34(10): 24-26. doi: 10.13204/j.gyjz200410007
Proportional views
Created with Highcharts 5.0.7 Amount of access Chart context menu Abstract Views, HTML Views, PDF Downloads Statistics Abstract Views HTML Views PDF Downloads 2024-04 2024-05 2024-06 2024-07 2024-08 2024-09 2024-10 2024-11 2024-12 2025-01 2025-02 2025-03 0 1 2 3 4 5 6
Created with Highcharts 5.0.7 Chart context menu Access Class Distribution FULLTEXT : 17.4 % FULLTEXT : 17.4 % META : 82.6 % META : 82.6 % FULLTEXT META
Created with Highcharts 5.0.7 Chart context menu Access Area Distribution 其他 : 6.5 % 其他 : 6.5 % 北京 : 10.9 % 北京 : 10.9 % 南京 : 2.2 % 南京 : 2.2 % 南通 : 2.2 % 南通 : 2.2 % 宝鸡 : 2.2 % 宝鸡 : 2.2 % 宣城 : 2.2 % 宣城 : 2.2 % 廊坊 : 2.2 % 廊坊 : 2.2 % 张家口 : 6.5 % 张家口 : 6.5 % 无锡 : 2.2 % 无锡 : 2.2 % 漯河 : 4.3 % 漯河 : 4.3 % 芒廷维尤 : 23.9 % 芒廷维尤 : 23.9 % 芝加哥 : 2.2 % 芝加哥 : 2.2 % 西宁 : 28.3 % 西宁 : 28.3 % 郑州 : 2.2 % 郑州 : 2.2 % 金华 : 2.2 % 金华 : 2.2 % 其他 北京 南京 南通 宝鸡 宣城 廊坊 张家口 无锡 漯河 芒廷维尤 芝加哥 西宁 郑州 金华