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Online since: September 2018
Authors: Elena G. Malyavina
Malyavinа1,а*
1Moscow State University of Civil Engineering, 26 Yaroslavskoye Shosse,
Moscow, 129337, Russia
аemal@list.ru
Keywords: graph theory, hydraulic circuit, finite difference method, time step matching, indoor air cooling, heat transfer agent cooling.
Investigation of the dynamic mode of the heating system, Water supply and sanitary engineering. 1 (2011) 56-61
Investigation of the dynamic mode of the heating system, Water supply and sanitary engineering. 1 (2011) 56-61
Online since: November 2011
Authors: Yong Sheng Shi, Qi Jun Lu, Ji Zhao
Experimental study for ABR to treat the domestic sewage
Ji Zhao1,a,Yongsheng Shi1,b , Qijun Lu1,c
1Department of water and wastewater Engineering;Faculty of Civil Engineering and Architecture;Kunming University of Science and Technology;Kunming 650000;China
aEmail:zjcloser@163.com,bEmail: linquanhj@163.com,cEmail:149414730@qq.com
Keywords: China; Small Town; ABR; Wastewater; HRT; COD;BOD
Abstract: As the Anaerobic Baffled Reactor (ABR) is very applicable to the wastewater treatment plant of Chinese small town, we studied about the performance of ABR at different Hydraulic Retention Times (HRTs) , the degradation effect of the four compartments of ABR and the effect of temperature to the degradation, to offer the useful reference and instruction for actual operation.
Online since: November 2011
Authors: Da Min Zhuang, Xiu Gan Yuan, Zhong Qi Liu, Wei Liu, Cheng Kun Liu
Study on Pilot Performance Model
Wei Liu1, a, Chengkun Liu2, Damin-Zhuang3, Zhongqi Liu4 and Xiugan-Yuan5
1,2 School of Automation Beijing University of Post and Telecommunications Beijing, China
3,4,5 School of Aeronautic Science and Engineering Beijing University of Aeronautics and Astronautics
a btwhlw@163.com
Keywords: eye movement; pilot performance; evaluation
Abstract.
Acknowledgment This work was financially supported by NSFC Project (30970904), (30400137); National Natural Foundation Commission and the Civil Aviation Science Foundation Project (60672181); National Basic Research Program of China (Program Grant No. 2010CB734104) References [1] Johnson N R, Rantanen E M.
Space Medicine & Medical Engineering, 2009, 22 (5): 358 - 361 (in Chinese) [5] Dong Changhong.
Acknowledgment This work was financially supported by NSFC Project (30970904), (30400137); National Natural Foundation Commission and the Civil Aviation Science Foundation Project (60672181); National Basic Research Program of China (Program Grant No. 2010CB734104) References [1] Johnson N R, Rantanen E M.
Space Medicine & Medical Engineering, 2009, 22 (5): 358 - 361 (in Chinese) [5] Dong Changhong.
Online since: July 2011
Authors: Jun Xiao, Hong Bo Tan, Bao Guo Ma, Kai Ke
Effect of Molecular Weight of Long-side-chain of Polycarboxylic Acid type Water-reducer on Hydration of C3A
Hongbo TAN1, a, Baoguo MA2, b, Kai Ke2, c and Jun Xiao2, d
1 School of Civil Engineering and Architecture, Wuhan University of Technology, Wuhan 430070, Hubei, the P.R.China
2 Key Laboratory for Silicate Materials Science Engineering of Ministry of Education, Wuhan University of Technology, Wuhan 430070, Hubei, the P.R.China
athbwhut@163.com, bmbgjob@163.com, cjuliets-kk@163.com, d158483588@qq.com
Keywords:C3A; Hydration; Long-side-chain; Polycarboxylic acid type water-reducing agents
Abstract: Several polycarboxylic acid type water-reducing agents (PCs) with different side-chain structure have been synthesized.
Online since: May 2012
Authors: Jie Kou, Wen Yang
Study on energy consumption analysis and application of Oil Gathering Station
Jie Kou1, a, Wen Yang1, b
1 College of Pipeline and Civil Engineering, China University of Petroleum (East China),Qingdao, China
achuyunk@163.com, byangwen112006@163.com
Keywords: oil gathering station, three links, energy saving, evaluation indicator
Abstract.
Neijiang Technology 2006, 1 (in Chinese) [5]Linnhoff B,Flower J R..AIChE J,1978,24(4):633~642 [6]Linnhoff B,et al.User Guide On Process Integration for the Efficient Use of Energy[M].xford [7]Linnhoff B.Hindmarsh E.Chem Eng Sci,1983 [8]Linnhoff B,Ahmad S..Computers and Chemical Engineering,1990,14:729~750 [9]Ben Hua.
Neijiang Technology 2006, 1 (in Chinese) [5]Linnhoff B,Flower J R..AIChE J,1978,24(4):633~642 [6]Linnhoff B,et al.User Guide On Process Integration for the Efficient Use of Energy[M].xford [7]Linnhoff B.Hindmarsh E.Chem Eng Sci,1983 [8]Linnhoff B,Ahmad S..Computers and Chemical Engineering,1990,14:729~750 [9]Ben Hua.
Online since: February 2011
Authors: Ling Ling Wang, Yang Jian Xu, Li Wen Dong
Heating Steady Thermal Stresses in an Al1100/Ti-6Al-4V/SiC 2D-FGM Plane Four-Side Clamped Plate
Yangjian Xua, Lingling Wangb and Liwen Dongc
School of Civil Engineering, Hebei University of Engineering, Handan 056038, China
axuyangjian@sohu.com, bwanglingling.168@163.com, cdongliwen2008@126.com
Keywords: Two dimension FGM; Plane four-side clamped plate; Steady thermal stress; FEM
Abstract.
Online since: July 2012
Authors: Hong Li Wang, Hong Min Zhou, Xian Tang Zhang, Xiao Long Li
Based on Numerical Simulation to Investigate the Process of Gas Explosion Accident in Coal Mine
Xiantang Zhanga, Xiaolong Lib, Hongli Wangc, Hongmin Zhoud
Shandong Provincial Key Laboratory of Civil Engineering Disaster Prevention and Mitigation,
Shandong University of Science and Technology, Qingdao, Shandong 266590, China
azzxhtm@163.com, blxlbbmm@163.com, cskdwhl@163.com, dhongminzhou@163.com
Keywords: Gas Explosion, Numerical simulation, Accident, Investigation, FLUENT.
(2) According to the calculation of the peak of pressure at every point, we can use relevant anti-blast structures and anti-explosion materials to guide the design of the anti-blast engineering
(2) According to the calculation of the peak of pressure at every point, we can use relevant anti-blast structures and anti-explosion materials to guide the design of the anti-blast engineering
Online since: May 2011
Authors: Zhi Guo Liu, Yu Dong Qi, Gui Mei Song
CCHP and Reliability of Electricity Supply
Yudong Qi1,a, Zhiguo Liu2,b Guimei Song1,c
1 Shandong Provincial Key Laboratory of Civil Engineering Disaster Prevention and Mitigation, Shandong University of Science and Technology, Qingdao 266510, Shandong, China
2 Taian Architectural Design & Research Institute Co., Ltd.
This paper will attempt to explore how to improve the security of electricity supply grid and gas energy utilization in the scope of built environment and engineering equipment.
This paper will attempt to explore how to improve the security of electricity supply grid and gas energy utilization in the scope of built environment and engineering equipment.
Online since: May 2011
Authors: Jing Zhou, Ying Li, Shao Hua Xv
Precaution Policy and Investigation on Pollution Status of Rural Domestic Waste in Beijing
Ying Li1, a, Shaohua Xv2,b, Jing Zhou3,c
1Beijing University of Engineering and Architecture, No.1 Zhanlanguan Rd., Xicheng District, Beijing 100044, P.R.China
a liy@bucea.edu.cn
Key words: rural; domestic waste; pollution; policy
Abstract: By investigating 18 villages of a town in Beijing, some pollution problems are shown as follows: collection and management system of waste is incomplete and the villagers know little about environment protection; garbage cans, many of which are damaged and lost, are far more to meet the disposal demand of increasing solid wastes; insufficient collecting vehicles run inefficiently, and simple landfill is the only disposal way.
Acknowledgements The Specific research of Beijing Institute of Civil Engineering and Architecture “Construction of new rural environment in Beijing and the sustainable use of resources”(100705403); Science and Technology Plan of Beijing Education Committee on Projects “Beijing Urban Ecological Research Evaluation Capacity”(KM201010016014); Scientific project soft science research project of Ministry Construction in 2008 “synthetic evaluation method on Beijing urbanization biocapacity”(2008-R2-4); Beijing Academic Innovation Group in Urban Stormwater System and Water Environmental Eco-Technologies (PHR201106124).
Acknowledgements The Specific research of Beijing Institute of Civil Engineering and Architecture “Construction of new rural environment in Beijing and the sustainable use of resources”(100705403); Science and Technology Plan of Beijing Education Committee on Projects “Beijing Urban Ecological Research Evaluation Capacity”(KM201010016014); Scientific project soft science research project of Ministry Construction in 2008 “synthetic evaluation method on Beijing urbanization biocapacity”(2008-R2-4); Beijing Academic Innovation Group in Urban Stormwater System and Water Environmental Eco-Technologies (PHR201106124).