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Online since: September 2013
Authors: Xiao Nian Sun, Xian Guang Wang, Ming Wen Wang
Then the principle of node importance and the calculation method can be adopted to obtain the maximal tree network of the reliability, which is significant for the layout of road network and the lifeline engineering.
Civil Engineering, 2006
Shanghai: School of Civil Engineering inTongji University, 2007
Geotechnical Engineering, 2001, 23 (3): 311-314.
Civil Engineering, 2006
Shanghai: School of Civil Engineering inTongji University, 2007
Geotechnical Engineering, 2001, 23 (3): 311-314.
Online since: October 2023
Authors: Nasir Shafiq, Syed Ahmad Farhan, Nadzhratul Husna, Fouad Ismail Ismail, Elsayed Ateya
Bond Stress Capacity of Steel Reinforcing Bars Embedded in GrapheneEnhanced High-Performance Concrete
Fouad Ismail Ismail1,2,a, Nadzhratul Husna3,b*, Syed Ahmad Farhan3,c, Nasir Shafiq1,3,d, and Elsayed Ateya2,e
1Department of Civil and Environmental Engineering, Universiti Teknologi PETRONAS, Seri Iskandar, Malaysia
2Department of Civil Engineering, Faculty of Engineering, Al-Azhar University, Cairo, Egypt
3Institute of Self-Sustainable Buildings for Smart Living, Universiti Teknologi PETRONAS, Seri Iskandar, Malaysia
afouadismail.14@azhar.edu.eg, bnadzrahusnaz@gmail.com, csyfarisk@gmail.com, dnasirshafiq@utp.edu.my, eelsayedateya.14@azhar.edu.eg
Keywords: bond stress-slip behaviour, graphene nanoplatelets, pull-out test
Abstract.
The performance of concrete can be enhanced by nano-engineering its cement.
The performance of concrete can be enhanced by nano-engineering its cement.
Online since: November 2022
Authors: Sallehan Ismail, Mahyuddin Ramli
To verify that recycled aggregate concrete (RAC) meets the structural design criteria of both real and civil construction applications, additional full-scale studies and assessments are required.
Physical and engineering properties of the GFRP I beam Fig. 1.
Khayat, An experimental study on flexural strength of reinforced concrete beams with 100% recycled concrete aggregate, Engineering Structures 88 (2015) 154-162
Eiras-López, Flexural performance of reinforced concrete beams made with recycled concrete coarse aggregate, Engineering Structures 156 (2018) 32-45
Ramli, Effects of adding fibre on strength and permeability of recycled aggregate concrete containing treated coarse RCA, International Journal of Civil, Architectural, Structural and Construction Engineering 8(8) (2014) 890-896
Physical and engineering properties of the GFRP I beam Fig. 1.
Khayat, An experimental study on flexural strength of reinforced concrete beams with 100% recycled concrete aggregate, Engineering Structures 88 (2015) 154-162
Eiras-López, Flexural performance of reinforced concrete beams made with recycled concrete coarse aggregate, Engineering Structures 156 (2018) 32-45
Ramli, Effects of adding fibre on strength and permeability of recycled aggregate concrete containing treated coarse RCA, International Journal of Civil, Architectural, Structural and Construction Engineering 8(8) (2014) 890-896
Online since: October 2023
Authors: Jan Valentin, Yong Wang, Alfonso Arevalillo Roman, Juan Antonio Ferriz-Papi
New Technologies for New Materials and Products from Construction and Demolition Waste
Juan A Ferriz-Papi1,a*, Yong Wang2,b, Alfonso Arevalillo Roman3,c
and Jan Valentin4,d
1School of Science, Engineering and Environment, University of Salford, Peel campus, M5 4WT, Salford, UK
2Department of Mechanical, Aerospace and Civil Engineering, University of Manchester, George Begg Building, M1 7DN, Manchester, UK
3TECNALIA, Basque Research and Technology Alliance (BRTA), Anardi Area, 5, E-20730, Azpeitia, Spain
4Faculty of Civil Engineering, Czech Technical University in Prague, Thákurova 7, 166 29 Praha 6, Czech Republic
aj.a.ferriz-papi@salford.ac.uk, byong.wang@manchester.ac.uk, calfonso.arevalillo@tecnalia.com, djan.valentin@fsv.cvut.cz
*corresponding author
Keywords: Circular economy, construction, construction and demolition waste, waste value chain, digitalization, market update, quality assurance, traceability, BIM, selective dismantling, sorting procedures, bottom-up solutions
Kdiri, "Reducing waste to landfill: A need for cultural change in the UK construction industry," Journal of Building Engineering, vol. 5, pp. 185-193, 2016
Kdiri, "Reducing waste to landfill: A need for cultural change in the UK construction industry," Journal of Building Engineering, vol. 5, pp. 185-193, 2016
Online since: January 2016
Authors: Dušan Katunský, Marek Zozulák, Martin Kamenský, Jana Katunská
External climatic conditions and thermal–humidity internal parameters changes in working environment of production building
Dušan Katunský1a *, Martin Kamenský1b, Jana Katunská1c, Marek Zozulák1d
1Technical University of Košice, Faculty of Civil Engineering, Institute of Architectural Engineering, Vysokoškolská 4, 042 00 Košice, Slovakia
adusan.katunsky@tuke.sk,bmartin.kamensky@tuke.sk,cjana.katunska@tuke.sk, dmarek.zoulak@tuke.sk
Keywords: microclimate, internal temperatures, production buildings, working environment
Abstract.
Diagnostic of a Selected Industrial Building and Design for its Thermal Refurbishment, Selected Scientific Paper / Journal of Civil Engineering, Vol.3, No. 1 (2008), p. 37- 44
Engineering, Vol. 3 (2011), p. 470-477
Diagnostic of a Selected Industrial Building and Design for its Thermal Refurbishment, Selected Scientific Paper / Journal of Civil Engineering, Vol.3, No. 1 (2008), p. 37- 44
Engineering, Vol. 3 (2011), p. 470-477
Online since: July 2016
Authors: Da Hai Zhang, Zhi Feng Wang, Xian Yan Zhou
Structural Condition Evaluation of an In-Service Glued-Laminated Timber Bridge Based on the Dynamic and Static Testing
Zhifeng WANG1, a *, Xianyan ZHOU2,b and Dahai ZHANG3,c
1Central South University of Forestry and Technology, 498 South Shaoshan Ave Changsha, Hunan 410004 P.R.China.
2Central South University of Forestry and Technology, 498 South Shaoshan Ave Changsha, Hunan 410004 P.R.China.
3Hunan Provincial Construction Engineering Quality Inspection Center, 305 Chiling Road Changsha, Hunan 410015 P.R.China.
The percentage is very small in the construction industry whose demand of material is huge, especially in the field of large-span spatial engineering structural materials with high additional value.
Finite Element Analysis The establishment of the finite element models The structural analysis software Midas Civil 2010 is used to establish the finite element model of this bridge.
Up to now, Most of Chinese research and engineering are conducted by referring to the US national standard NDS-005, which employs the Load and hold Factor Design (LRFD) method for structural Design.
“Modern Timber Bridgse and Their Structure Types”, Journal of Architecture and Civil Engineering, Vol. 30, No. 1, 2011, pp. 83-91
The percentage is very small in the construction industry whose demand of material is huge, especially in the field of large-span spatial engineering structural materials with high additional value.
Finite Element Analysis The establishment of the finite element models The structural analysis software Midas Civil 2010 is used to establish the finite element model of this bridge.
Up to now, Most of Chinese research and engineering are conducted by referring to the US national standard NDS-005, which employs the Load and hold Factor Design (LRFD) method for structural Design.
“Modern Timber Bridgse and Their Structure Types”, Journal of Architecture and Civil Engineering, Vol. 30, No. 1, 2011, pp. 83-91
Online since: August 2019
Authors: Shilpa Pal, Rekha Puria, Vikrant Nain, Rajendra Prasad Pathak, sachin tiwari
Student, Department of Civil Engineering, School of Engineering, Gautam Buddha University, Greater Noida, U.P., India
2Assistant Professor, Department of Civil Engineering, School of Engineering, Gautam Buddha University, Greater Noida, U.P., India
3Assistant Professor, School of Biotechnology, Gautam Buddha University, Greater Noida, U.P., India
4 Scientist C, Central Soil and Materials Research Station, New Delhi, India
atiwarisachin859@gmail.com, bsh6281pa@gmail.com, crpuria@gmail.com, dvikrant.nain@gmail.com, edrrppathak@gmail.com
Keywords: Compressive strength, Bacteria, Self healing, Crack size, Micro study
Abstract.
Online since: June 2010
Authors: Ye Tian, Ben Liang Liang
A Novel Defect Evaluation Method for Concrete Structures in Infrared
Based on ANN and PSO Algorithm
BenLiang LIANG1, a, Ye TIAN
2, b
1
College of Civil Engineering, Shanghai Normal University, Shanghai, China PR, 201418
2
Institute of Railway and Urban Rail Transit, Tongji University, Shanghai, China PR, 200331
a
lbl@shnu.edu.cn, btiany@126.com
Keywords: concrete structures, infrared nondestructive testing, heat transfer inverse problem,
artificial neural networks, particle swarm optimization algorithms
Abstract: The defect of concrete structures on material level can be expressed by defect depth and
defect range.
How to obtain the accurate defect depth and defect range is a critical issue to engineers.
Canadian Journal of Civil Engineering 30(3)
[16]Shi Y, Eberhart R, A modified particle swarm optimizer [C], IEEE WorldCongress on Computational Intelligence, pp.69-73, 1998 [17]Wang Suihua, Feng Aiqin,Li Aiguo ,A BP Networks Learning Algorithm Based on PSO, Computer Engineering and Application, 13,2003(in chinese) [18]Chiang K-W, Noureldin A., and El-Sheimy N: "A New Weights Updating Method for Neural Networks Based INS/GPS Integration Architectures;" Journal of Measurement Science and Technology, London, UK, V 15 (10), pp. 2053-2061, October 2004.
How to obtain the accurate defect depth and defect range is a critical issue to engineers.
Canadian Journal of Civil Engineering 30(3)
[16]Shi Y, Eberhart R, A modified particle swarm optimizer [C], IEEE WorldCongress on Computational Intelligence, pp.69-73, 1998 [17]Wang Suihua, Feng Aiqin,Li Aiguo ,A BP Networks Learning Algorithm Based on PSO, Computer Engineering and Application, 13,2003(in chinese) [18]Chiang K-W, Noureldin A., and El-Sheimy N: "A New Weights Updating Method for Neural Networks Based INS/GPS Integration Architectures;" Journal of Measurement Science and Technology, London, UK, V 15 (10), pp. 2053-2061, October 2004.
Online since: June 2010
Authors: R.C. Yu, X.X. Zhang, Gonzalo Ruiz, M. Tarifa, M. Cámara
., Journal of Engineering Mechanics, 116, pp.
2463-2484 (1990)
[4] Hu, X., and Wittmann, F.H., Journal of Materials in Civil Engineering, 2, pp. 15-23 (1990)
[6] Wittmann, F.H., Sadhana - Academy Proceedings in Engineering Sciences, 27, pp. 413-423 (2002)
C., Journal of Materials in Civil Engineering, 20, pp. 544-551 (2008)
[4] Hu, X., and Wittmann, F.H., Journal of Materials in Civil Engineering, 2, pp. 15-23 (1990)
[6] Wittmann, F.H., Sadhana - Academy Proceedings in Engineering Sciences, 27, pp. 413-423 (2002)
C., Journal of Materials in Civil Engineering, 20, pp. 544-551 (2008)
Online since: May 2011
Authors: Gui Yuan Li, Yang Xu, Zhong Yuan Duan
The Discussion on the Construction of City Waterfront Landscape Based on the Visual Angle of Ecology Restoration
Guiyuan Li 1,a, Zhongyuan Duan 2,b and Yang Xu 2,b
1 College of Civil Engineering and Architecture of China Three Gorges University
Wuhan Hubei China
2College of Civil Engineering and Architecture of China Three Gorges University
Yichang Hubei China
2College of Chemistry and Life Science of China Three Gorges University
Yichang Hubei China
algy@ctgu.edu.cn , bduanzhong_yuan@126.com, b402794554@qq.com
Key words: Waterfront Landscape; Ecology Restoration; Landscape Ecology Pattern; Artificial Wetland.
The concept of ecology restoration and theory.The ecology restoration means that, based on ecology principle, through certain technology and method of biology, ecology and engineering, artificially changes and cuts off the leading factor and process of ecosystem degradation, adjusts, configures or optimizes flow processes and space-time order of material, energy and information inside and outside the system, restoring the ecosystem structure, function and ecology potential certain or original even higher level [2].
According to this, the use of wetland restoration technology, (i.e. through the ecology technology or the ecology engineering, the degenerate or vanished wetlands are repaired or rebuilt to reproduce the physical, chemical and biological characteristics before disturbance, so that the the proper role is played.) [4] restores ecology wetland landscape depending on the hill, and the use of physical, chemical and biological triple co-ordination role of the matrix - - microorganism - - plant compound ecosystem achieves the efficient purification of sewage, through filtration, adsorption, precipitation, ionic exchange, plant absorption and microorganism decomposition.
The concept of ecology restoration and theory.The ecology restoration means that, based on ecology principle, through certain technology and method of biology, ecology and engineering, artificially changes and cuts off the leading factor and process of ecosystem degradation, adjusts, configures or optimizes flow processes and space-time order of material, energy and information inside and outside the system, restoring the ecosystem structure, function and ecology potential certain or original even higher level [2].
According to this, the use of wetland restoration technology, (i.e. through the ecology technology or the ecology engineering, the degenerate or vanished wetlands are repaired or rebuilt to reproduce the physical, chemical and biological characteristics before disturbance, so that the the proper role is played.) [4] restores ecology wetland landscape depending on the hill, and the use of physical, chemical and biological triple co-ordination role of the matrix - - microorganism - - plant compound ecosystem achieves the efficient purification of sewage, through filtration, adsorption, precipitation, ionic exchange, plant absorption and microorganism decomposition.