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Online since: October 2010
Authors: Jing Long Li, Shu Cai Li, Shu Chen Li
The Applications Of Concrete Cut-Off Wall In The Reinforcement Of The Earth Dam
Jinglong LI1, a, Shucai LI1,b and Shuchen LI 1,c
1 school of civil engineering Shandong University, China
alijl@sdu.edu.cn, bshucaili@sdu.edu.cn, cshuchenlli@sdu.edu.cn
Keywords: concrete cutoff wall; earth dam; numerical analysis
Abstract.
The analysis model is set up by the engineering analysis software FLAC3D.
However, due to various reasons in engineering, ordinary concrete cut-off wall are still applied generally.
Calculation Of Incremental Effective Stress By Vacuum Preloading And Its Application To Engineering.
Chinese Journal of Rock Mechanics and Engineering[J],2006,25(Z2)
The analysis model is set up by the engineering analysis software FLAC3D.
However, due to various reasons in engineering, ordinary concrete cut-off wall are still applied generally.
Calculation Of Incremental Effective Stress By Vacuum Preloading And Its Application To Engineering.
Chinese Journal of Rock Mechanics and Engineering[J],2006,25(Z2)
Online since: December 2010
Authors: Fei Leng, Dong Wang Fu
Models of Aqueducts with Different Height-Width Ratio on Rigid Buttress
Fei Leng1, a, Dongwang Fu2, b
1College of Civil and Transportation Engineering, Hohai University, Xikang Road 1, Nanjing, China 210024
2Nanjing Water Planning and Designing Institute, Honghuacun Road 136, Nanjing, China 210006
aphileng@gmail.com, b42738604@qq.com
Keywords: Aqueduct; Seismic Analysis; Water-Structure Interaction; Analysis Model
Abstract.
Introduction Water Diversion Engineering can solve the problem of uneven distribution of available water resource between different regions and is employed in many countries.
Aqueduct is a common structure in water diversion and thus seismic analysis of aqueduct is of importance for water diversion engineering.
Xie: Journal of Hydraulic Engineering.
Hu, J.yan and K.Wang: Journal of Hydraulic Engineering.
Introduction Water Diversion Engineering can solve the problem of uneven distribution of available water resource between different regions and is employed in many countries.
Aqueduct is a common structure in water diversion and thus seismic analysis of aqueduct is of importance for water diversion engineering.
Xie: Journal of Hydraulic Engineering.
Hu, J.yan and K.Wang: Journal of Hydraulic Engineering.
Online since: November 2012
Authors: Jian Bo Sun, Dong Wang
Analysis and Research of Deep Foundation Pit Pars Horizontal Displacement Prediction Method
JianBo Sun1,a, Dong Wang2,b
1,2Faculty of Civil Engineering and Architecture, Kunming University of Science and Technology.
High buildings, large municipal facilities to the construction and the development of underground space will face a problem-of deep foundation pit engineering.
Many factors influence the pit deformation[1], there are three major types: (1) the natural factors, including the scene hydrogeology conditions and engineering environmental conditions; (2) design factors; (3) the construction technology factors.
Therefore, the model is suitable for using in the need to strictly control the deformation of foundation pit engineering.
,Hou: Foundation Engineering Handbook .( China Building Industry Press, China 1996),P195
High buildings, large municipal facilities to the construction and the development of underground space will face a problem-of deep foundation pit engineering.
Many factors influence the pit deformation[1], there are three major types: (1) the natural factors, including the scene hydrogeology conditions and engineering environmental conditions; (2) design factors; (3) the construction technology factors.
Therefore, the model is suitable for using in the need to strictly control the deformation of foundation pit engineering.
,Hou: Foundation Engineering Handbook .( China Building Industry Press, China 1996),P195
Online since: May 2011
Authors: You Ping Liu, Jian Hua Li, Hong Zhang, Mao Dong Xiong
The Study and Applications on Fiber Bragg Grating (FBG) Monitoring System for Deep and Large Deformed Soft Ground
Hong ZHANG 1,a, Youping LIU 1,b, Jianhua LI 1,c, Maodong XIONG 2,d
1Department of Civil Engineering, Nan Chang Institute of Technology, Nan Chang 330099, China;
2Jiang Xi Highway Exploitation Parent Company, Nan Chang 330038, China;
azhanghlion@163.com, bliuyouping24@tom.com, cgdwjljh@163.com, dcsulyp@126.com
Keywords: Soft ground, Fiber Bragg Grating (FBG) monitoring, long range optical fiber displacement sensor, burying technology.
References [1] Guangqing WEI, Bin SHI, Sheng HU, et al: Chinese Journal of Geotechnical Engineering Vol.4(2009), p. 571-576,in Chinese
[3] SUI Haibo, SHI bin, ZHANG Dan, et al: Chinese Journal of Rock Mechanics and Engineering Vol. 2 (2008), p. 3725-3731, in Chinese
[6] Weijun XU, Jianguo HOU, Duanyou LI: Journal Of Hydroelectric Engineering Vol. 1(2007), p. 97-101,in Chinese
[15] Liang Chen, Junbin Huang: Ship Electronic Engineering Vol. 12(2008), p. 185-188, in Chinese.
References [1] Guangqing WEI, Bin SHI, Sheng HU, et al: Chinese Journal of Geotechnical Engineering Vol.4(2009), p. 571-576,in Chinese
[3] SUI Haibo, SHI bin, ZHANG Dan, et al: Chinese Journal of Rock Mechanics and Engineering Vol. 2 (2008), p. 3725-3731, in Chinese
[6] Weijun XU, Jianguo HOU, Duanyou LI: Journal Of Hydroelectric Engineering Vol. 1(2007), p. 97-101,in Chinese
[15] Liang Chen, Junbin Huang: Ship Electronic Engineering Vol. 12(2008), p. 185-188, in Chinese.
Online since: May 2011
Authors: Jun Chang, Yu Meng Wu
Study on In-Service Bridge LCC Decision Model Based on Maintenance Management System
WU Yu-menga, CHANG Junb
Department of Civil Engineering, Suzhou University of Science and Technology, Suzhou 215011, aemail:wuyumeng@126.com, bemail: changjun21@126.com
Keywords: Life-cycle cost (LCC), in-service bridge, Markov process, Decision-making tree, Bridge maintenance management system
Abstract.
Probabilistic Engineering Mechanics,2006(21), P1-P8
Journal of Structural Engineering,2005,131(5), P833-P835
[4] Liu Min, Frangopol Dan M: Optimal bridge maintenance planning based on probabilistic performance prediction[J].Engineering Structures,2004(26), P991-P1002
Journal of Suzhou University of Science and Technology (Engineering and Technology), 2010(1), P44-P50.
Probabilistic Engineering Mechanics,2006(21), P1-P8
Journal of Structural Engineering,2005,131(5), P833-P835
[4] Liu Min, Frangopol Dan M: Optimal bridge maintenance planning based on probabilistic performance prediction[J].Engineering Structures,2004(26), P991-P1002
Journal of Suzhou University of Science and Technology (Engineering and Technology), 2010(1), P44-P50.
Online since: May 2011
Authors: De Ying Li, Jie Zhang
Exterior Wall Insulation Technology
Jie Zhanga Deying Lib
Environment and Energy Engineering Department, Beijing University of Civil Engineering and Architecture, Beijing, 100044 China
a frerhas@126.com, b lideying@bucea.edu.cn
Key words: exterior wall insulation energy-saving construction
Abstract.
Joints at the door and window openings, component interfaces, surface mortar lack compaction and fullness, easily lead to cracking 7. flatness is hard to control, and the flatness may not meet regulatory requirements The organization and supervision of construction Exterior insulation construction is a very complex production process, it involves management organizations, the overall balance of human and material resources, construct job training, tools and equipment arrangements, and individual engineering requirements and technical tests, construction progress and schedules, safe construction, and many other requirements and contents.
References [1] LiXiaoming, Exterior insulation system design, Construction Technology, vol.38, No.5, 2009 [2] ZhouChangde, WangWenzhi, some views on exterior insulation engineering applications, Engineering Technology,2007 [3] ChenYongtong, construction study on exterior wall insulation of energy saving building, Modern Business Trade Industry, No.7,2009 [4] LiuPeng, ZhangDawei, outlooks and prospects of exterior insulation technology applications in the northern region building, liaoning building materials,No.4,2009 [5] GaoYong, exterior wall insulation construction, Engineering Structures and Construction Technology,Dec.2008
Joints at the door and window openings, component interfaces, surface mortar lack compaction and fullness, easily lead to cracking 7. flatness is hard to control, and the flatness may not meet regulatory requirements The organization and supervision of construction Exterior insulation construction is a very complex production process, it involves management organizations, the overall balance of human and material resources, construct job training, tools and equipment arrangements, and individual engineering requirements and technical tests, construction progress and schedules, safe construction, and many other requirements and contents.
References [1] LiXiaoming, Exterior insulation system design, Construction Technology, vol.38, No.5, 2009 [2] ZhouChangde, WangWenzhi, some views on exterior insulation engineering applications, Engineering Technology,2007 [3] ChenYongtong, construction study on exterior wall insulation of energy saving building, Modern Business Trade Industry, No.7,2009 [4] LiuPeng, ZhangDawei, outlooks and prospects of exterior insulation technology applications in the northern region building, liaoning building materials,No.4,2009 [5] GaoYong, exterior wall insulation construction, Engineering Structures and Construction Technology,Dec.2008
Online since: December 2010
Authors: Jing Yang, Shi Guo Xiao
Internal Forces of Double-Row Pile Slope Stabilization Systems Influenced by of Pile Row Separation
Shiguo Xiao a and Jing Yang b
Department of Geotechnical Engineering, Southwest Jiaotong University, Chengdu, China.
This work will be used to provide a theoretical basis for related engineering practices.
Chinese Journal of Geotechnical Engineering, 2008,30(7):1033~1037 ( In Chinese) [2] Cai Yuanqiang, Zhao Yongqian, Wu Shiming, Chen Yunmin.
Journal of Shenyang Architecture and Civil Engineering University, 2003,19(2):98-100 ( In Chinese) [7] He Yihua, Yang Bin, Jin Baosen, Li Ruiru, Tan Yongjian, Wang Tiehong.
Chinese Journal of Underground Space and Engineering, 2005, 1(7): 1096-1099 ( In Chinese)
This work will be used to provide a theoretical basis for related engineering practices.
Chinese Journal of Geotechnical Engineering, 2008,30(7):1033~1037 ( In Chinese) [2] Cai Yuanqiang, Zhao Yongqian, Wu Shiming, Chen Yunmin.
Journal of Shenyang Architecture and Civil Engineering University, 2003,19(2):98-100 ( In Chinese) [7] He Yihua, Yang Bin, Jin Baosen, Li Ruiru, Tan Yongjian, Wang Tiehong.
Chinese Journal of Underground Space and Engineering, 2005, 1(7): 1096-1099 ( In Chinese)
Online since: October 2013
Authors: Kai Yun Yang, Fei Guo, Lin Hao Li
Xun, ShaYing River Port Junction Project sluice pier Crack Analysis, Water Transport Engineering, 8 (2000) 5-8
Ren, Xianxian sluice floor crack and treatment, Hebei Water Resources and Hydropower Engineering, 4 (2001) 29-31
Wu, Sluice concrete temperature control and crack prevention, Engineering Mechanics, 9 (2009) 16-17
Cao, Pier wall pipe cooling of concrete structures, Engineering Mechanics, 5 (2004) 5-7
Zhou, Large sluice piers Simulation of thermal stress and crack control study, China Civil Engineering Journal, 7 (2012) 13-14
Ren, Xianxian sluice floor crack and treatment, Hebei Water Resources and Hydropower Engineering, 4 (2001) 29-31
Wu, Sluice concrete temperature control and crack prevention, Engineering Mechanics, 9 (2009) 16-17
Cao, Pier wall pipe cooling of concrete structures, Engineering Mechanics, 5 (2004) 5-7
Zhou, Large sluice piers Simulation of thermal stress and crack control study, China Civil Engineering Journal, 7 (2012) 13-14
Online since: July 2013
Authors: Chi Yu, Gang Wang
The fluid field analysis of cyclone desander
CHI YU1, a, GANG WANG2,b
1 Environmental and Chemical Engineering College, Dalian University, Dalian 116622, China
2 Civil and Architecture Engineering College, Dalian University, Dalian 116622, China
ayuchiyuchi@163.com, bwanggang@dlu.edu.cn
Keywords: cyclone desander, fluid field, FLUENT, numerical simulation
Abstract.
After the 1960s, the cyclone was applied to test equipment and other broader industrial sectors, the particle size grading in mineral and metallurgy industry, the mineral recovery and water treatment, the liquid-liquid extraction, solid -liquid leaching and crystallization in chemical industry, the space technology of separation in zero gravity field, recycling of lubricating oil and precious metal in mechanical processing industry, the recovery of rare metals in electronics industry, the recovery of enzymes and microbe in chemical and biological engineering, the separation of the starch, fruit juice, yeast and water in food and fermentation industry, the separation of oil and water, of oil-water-gas and of oil-water-slurry in oil industry.
Vol. 33 (2005), p.15-17(In Chinese) [5] YAN Tai ning, ZHANG Tao: Exploration Engineering.
Vol. 11(1994), p. 37-50 [7] HARGREAVES J H,SILVESTER R S: Chemical Engineering Research and Design.
Vol. 48 (1993), p. 1143-1152 [9] MALHOTRA A, BRANION R M R, HAYOTNAN E G: The Canadian Journal of Chmical Engineering.
After the 1960s, the cyclone was applied to test equipment and other broader industrial sectors, the particle size grading in mineral and metallurgy industry, the mineral recovery and water treatment, the liquid-liquid extraction, solid -liquid leaching and crystallization in chemical industry, the space technology of separation in zero gravity field, recycling of lubricating oil and precious metal in mechanical processing industry, the recovery of rare metals in electronics industry, the recovery of enzymes and microbe in chemical and biological engineering, the separation of the starch, fruit juice, yeast and water in food and fermentation industry, the separation of oil and water, of oil-water-gas and of oil-water-slurry in oil industry.
Vol. 33 (2005), p.15-17(In Chinese) [5] YAN Tai ning, ZHANG Tao: Exploration Engineering.
Vol. 11(1994), p. 37-50 [7] HARGREAVES J H,SILVESTER R S: Chemical Engineering Research and Design.
Vol. 48 (1993), p. 1143-1152 [9] MALHOTRA A, BRANION R M R, HAYOTNAN E G: The Canadian Journal of Chmical Engineering.
Online since: January 2013
Authors: Ping Wang, Rong Yang, Ji Feng Tian
Experimental Study of the Influence on the Residual Fatigue Life
of 45 # Steel Fatigue Damage Specimens
WANG Ping1, a, YANG Rong2,b and TIAN Jifeng1,c
1College of Civil Engineering and Mechanics, Yanshan University, Qinhuangdao,China 066004
2The State key Laboratory of Nonliner Mechanics, Institute of Mechanics, Chinese Academy of Sciences, Beijing, China 100080
awangpin0721@163.com, byangr@lnm.imech.ac.cn, ctianjifeng123@126.com
Keywords: fatigue; damage; fatigue life; repair; pulse discharge.
Therefore, the interest of research on fatigue damage healing of metal component has attracted many scholars and engineers.
Supplement of Chinese Journal of Material Engineering, 2003:207-210 [8] DU Baiping, MA Baotian, LI Nian, ZHU Weidou.
International Journal of Engineering Failure Analysis. 2010.
International Journal of Materials Science and Engineering A. 478 (2008) 93–100 [12] V.V.
Therefore, the interest of research on fatigue damage healing of metal component has attracted many scholars and engineers.
Supplement of Chinese Journal of Material Engineering, 2003:207-210 [8] DU Baiping, MA Baotian, LI Nian, ZHU Weidou.
International Journal of Engineering Failure Analysis. 2010.
International Journal of Materials Science and Engineering A. 478 (2008) 93–100 [12] V.V.