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Online since: December 2010
Authors: Ke Min Zhou, Xia Li
Optimal Grillages by 3-Nodes Triangle Finite Element
Kemin Zhoua, Xia Lib
College of Civil Engineering, Huaqiao University, Fujian, 362021, China
azhoukm@hqu.edu.cn, bxlixia@eyou.com
Keywords: Least-Weight Grillage; Topology Optimization; Fully-Stressed Criterion; Triangle Finite Element.
Analysis versus synthesis in structural engineering.
Analysis versus synthesis in structural engineering.
Online since: February 2012
Authors: Roger Zou, Frank Collins
Roger Zou1,a and Frank Collins2,b
1,2Department of Civil Engineering, Building 60, Monash University, VIC 3800, Australia
aroger.zou@monash.edu, bfrank.collins@monash.edu
Key words: rust deposition, reinforcement corrosion, cover cracking, predictive model
Abstract.
[8] Pantazopoulou S.J. and Papoulia K.D., Journal of Engineering Mechanics, V. 127, No. 4. 2001, p. 342
[8] Pantazopoulou S.J. and Papoulia K.D., Journal of Engineering Mechanics, V. 127, No. 4. 2001, p. 342
Online since: October 2013
Authors: Li Juan Cao, Zi Chang Shangguan, Yu Ning Liu
Marine Biodiversity and Sustainable Development Strategy for Dabijiashan National Special Marine Protected Area
Yuning Liu1, a, Lijuan Cao 2,b, Zichang Shangguan3,c
1Jinzhou City Oceanic and Fishery Administration, Jinzhou, China
2School of Mechanical and Power Engineering, Dalian Ocean University, Dalian, China
3 Institute of Marine and Civil Engineering, Dalian Ocean University, Dalian, China
aliuyuning1961@sohu.com, bclj@dlou.edu.cn, cshangguan@dlou.edu.cn
Keywords: Marine biodiversity; sustainable development strategy; marine protected area; ecosystem diversity
Abstract.
Online since: August 2013
Authors: Li Zhang, Yong Gang Huang, Bin Hui Jiang, Xiao Min Hu
Study on active recovery of anaerobic ammonia oxidation and start-up of ASBR reactor
Li Zhang1,a, Xiao-min Hu1,b, Bin-hui Jiang1,cand Yong-gang Huang2,d
1College of resources and civil engineering, Northeastern University, Shenyang110819, China
2School of Mechanical Engineering & Automation, Northeast University, Shenyang,China
asy_zhangli99@sina.com, bhxmin_jj@163.com, cjiangbinhui@me.neu.edu.cn,657142396@qq.comd
Keywords: Anaerobic ammonia oxidation; ASBR; Active recovery; Enrichment culture
Abstract.
Online since: June 2019
Authors: Andrei V. Tur
Introduction
In recent years, the attention of engineers and the scientific community has increasingly turned to the question of robustness of the structural systems and prevention of the progressive collapse.
Reliability Approaches to Modeling of the Nonlinear Pseudo-static Response of RC-structural Systems in Accidental Design Situations// Journal of Sustainable Architecture and Civil Engineering 22(1): 76-87
Reliability Approaches to Modeling of the Nonlinear Pseudo-static Response of RC-structural Systems in Accidental Design Situations// Journal of Sustainable Architecture and Civil Engineering 22(1): 76-87
Online since: September 2014
Authors: Shu Min Nie, Jun Yan Liu
Discussion on Objective-cost Planning for Construction Project Objective –Total Cost Management
Shumin Nie 1, a, Junyan Liu 2,b
1 School of Resourses and Environment, University of Jinan, Jinan, China
2 School of Civil Engineering and Architecture, University of Jinan, Jinan, China
afo_niesm@ujn.edu.cn, bliujunyan@vip.sina.com
Keywords: construction project, objective-total cost management, objective-cost planning
Abstract.
The cost driver consumption of the construction project for the construction works generally adopts the construction quota and labor quota of the enterprise, and sometimes also is obtained through the data analysis of the work experience of the engineering technical personnel or workers.
The cost driver consumption of the construction project for the construction works generally adopts the construction quota and labor quota of the enterprise, and sometimes also is obtained through the data analysis of the work experience of the engineering technical personnel or workers.
Online since: February 2012
Authors: Yue Wang, Xiao Jun Hu
It features advantages of land and energy conservation, waste recycling, environmental friendliness, high strength, high safety, good fire prevention, strong endurance, simple masonry and construction engineering as well as low comprehensive cost.
Advantages of applying thermal insulation composite wall 4.1 Little restriction on choice of thermal insulation materials According to relevant rules, the external thermal insulation materials for civil buildings shall be those with burning performance.
Table 4 Economical comparison between thermal insulation composite wall technology and aerated concrete block thermal insulation system Project Thermal insulation composite wall technology Aerated concrete block outer wall thermal insulation system Thermal insulation cost of main wall body Sintered thermal insulation composite brick: RMB 125.00/m2 Sand aerated materials: RMB 62.50 /m2, inorganic thermal insulation mortar: RMB 65.00/m2, total RMB 127.5/m2 Concrete thermal insulation composite brick: RMB 120.00/m2 Thermal insulation cost of components Fabrication technology of thermal insulation composite board: RMB 48.00/m2 Inorganic thermal insulation mortar: RMB 65.00/m2 Inorganic thermal insulation mortar: RMB 65.00/m2 Construction cycle Thermal insulation project in step with wall construction, with construction cycle shortened Thermal insulation engineering not in step with wall construction, requiring construction cycle for newly-added thermal insulation project 4.4 Good durability
Advantages of applying thermal insulation composite wall 4.1 Little restriction on choice of thermal insulation materials According to relevant rules, the external thermal insulation materials for civil buildings shall be those with burning performance.
Table 4 Economical comparison between thermal insulation composite wall technology and aerated concrete block thermal insulation system Project Thermal insulation composite wall technology Aerated concrete block outer wall thermal insulation system Thermal insulation cost of main wall body Sintered thermal insulation composite brick: RMB 125.00/m2 Sand aerated materials: RMB 62.50 /m2, inorganic thermal insulation mortar: RMB 65.00/m2, total RMB 127.5/m2 Concrete thermal insulation composite brick: RMB 120.00/m2 Thermal insulation cost of components Fabrication technology of thermal insulation composite board: RMB 48.00/m2 Inorganic thermal insulation mortar: RMB 65.00/m2 Inorganic thermal insulation mortar: RMB 65.00/m2 Construction cycle Thermal insulation project in step with wall construction, with construction cycle shortened Thermal insulation engineering not in step with wall construction, requiring construction cycle for newly-added thermal insulation project 4.4 Good durability
Online since: September 2011
Authors: De Zhi Liang, Li Sun, Jun Cui, Jun Wang
The effect of the foundation’s rotation of the portal- rigid frames on the internal force of the upper structure
Dezhi Liang1, a, Jun Wang1,b,Li Sun1,c,Jun Cui1,d
1School of Civil Engineering, Shenyang Jianzhu University, China
aliangdezhi2000@163.com, bwang.jun.1012@163.com,
csunli2001@hotmail.com,dcuijun01717@163.com
Keywords: portal-rigid frames, rotation of the foundation, the effect on internal force
Abstract.
(In Chinese) [3] H.O.Mo,X.P.Yang: Foundation engineering (China architecture press, Beijing, 2003).
(In Chinese) [3] H.O.Mo,X.P.Yang: Foundation engineering (China architecture press, Beijing, 2003).
Online since: August 2011
Authors: Lai Xue Pang, Xin De Tang, Hong Shi, Peng Fei Cuan
The Preparation of TiO2 Nanotube Arrays
PANG Laixue 1,2,a, CUAN Pengfei 3,SHI Hong 1 and TANG Xinde 1
1 Department of Civil Engineering, Shandong Jiaotong University, Jinan, 250023 PR China
2 College of Chemistry,Chemical Engieering and Materials Science, Shandong Normal University, Jinan, 250358 PR China
3 School of Material Science and Engineering, Shandong University, Jinan, 250061 PR China
a E-mail: lxpang@sdjtu.edu.cn
Keywords: TiO2 nanotube array; anodization; microstructure; preparation
Abstract.