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Online since: April 2016
Authors: S. Krishna Rao, P. Sravana, T. Chandrasekhar Rao
Research Scholar, Civil Engineering, JNTUH, Hyderabad, Telangana, India-500085, 09948035265, Corresponding author
2.
Professor, Civil Engineering, JNTUH, Hyderabad, Telangana, India-500085 3.
Journal of Materials in Civil Engineering, 14(3), 274-277. http://dx.doi.org/10.1061/(ASCE)0899-1561(2002)14:3(274) [4] Atiş, C.
Journal of Materials in Civil Engineering, 14(5), 417-426. http://dx.doi.org/10.1061/(ASCE)0899-1561(2002)14:5(417) [17] Naik, T.
Journal of Japan Society of Civil Engineers, Ser.
Professor, Civil Engineering, JNTUH, Hyderabad, Telangana, India-500085 3.
Journal of Materials in Civil Engineering, 14(3), 274-277. http://dx.doi.org/10.1061/(ASCE)0899-1561(2002)14:3(274) [4] Atiş, C.
Journal of Materials in Civil Engineering, 14(5), 417-426. http://dx.doi.org/10.1061/(ASCE)0899-1561(2002)14:5(417) [17] Naik, T.
Journal of Japan Society of Civil Engineers, Ser.
Online since: July 2014
Authors: Xiao Jie Liu, Ya Chuan Kuang, Jin Ren Feng, Zhi Wu Yu
Experimental study and analysis of the structural behavior of steel-concrete composite beam after shear connector corrosion
Yachuan Kuang1,a, Jinren Feng1,b , Zhiwu Yu1,2,c and Xiaojie Liu1,d
1 School of Civil Engineering, Central South University, Changsha, Hunan, 410075, China
2 National Engineering Laboratory for High Speed Railway Construction, Central South University, Changsha, Hunan, 410075, China
akuangyachuan@csu.edu.cn, b903014037@qq.com, cyuzhiwu@csu.edu.cn, dMarymary.liu@gmail.com
Keywords: steel-concrete composite structure; stud shear connector corrosion; deterioration of behavior; shear capacity; flexural capacity
Abstract.
The push-out specimens were made and cured in the laboratory of School of Civil Engineering at Central South University.
China Civil Engineering Journal, 1999,32(2): 3-8(in Chinese)
China Civil Engineering Journal,2006, 39(3): 42-46(in Chinese)
China Civil Engineering Journal, 2003, 36(8): 1-6(in Chinese)
The push-out specimens were made and cured in the laboratory of School of Civil Engineering at Central South University.
China Civil Engineering Journal, 1999,32(2): 3-8(in Chinese)
China Civil Engineering Journal,2006, 39(3): 42-46(in Chinese)
China Civil Engineering Journal, 2003, 36(8): 1-6(in Chinese)
Online since: October 2010
Authors: A. Kheyroddin, M.H. Saghafi, S. Safakhah
Strengthening of Historical Masonry Buildings with Fiber Reinforced
Polymers (FRP)
KHEYRODDIN A1, a
, SAGHAFI M H
2, b and SAFAKHAH S2,c
1
Civil Engineering Faculty, Semnan University, Semnan, Iran
2
Civil Engineering Faculty, Islamic azad University- Semnan, Semnan, Iran
a
Akheirodin@semnan.ac.ir, bsaghafimh@yahoo.com, csorush_safakhah@yahoo.com
Abstract The historical masonry buildings form widespread spectrum of existing buildings in
IRAN. destruction on structures illustrate that historical masonry buildings have maximum damages
due earthquake, in addition they don't actuate properly about seismic behavior (the main reason of
this is lack of proper ductility).
Advances in Engineering Software,ARTICLE IN PRESS [4] ELGawady, MA, Lestuzzi, P, and Badoux, M(2004).
"Seismic retrofitting of masonry buildings," in 14th Civil Engineering Student's Conference
"Numerical modeling of masonry panels using ANSYS software." in 4th National Congress on Civil Engineering, University of Tehran [9] Moghadam, H (1998) "Seismic designing of masonry buildings
MSc Structural thesis, Department of Civil engineering, University of Semnan
Advances in Engineering Software,ARTICLE IN PRESS [4] ELGawady, MA, Lestuzzi, P, and Badoux, M(2004).
"Seismic retrofitting of masonry buildings," in 14th Civil Engineering Student's Conference
"Numerical modeling of masonry panels using ANSYS software." in 4th National Congress on Civil Engineering, University of Tehran [9] Moghadam, H (1998) "Seismic designing of masonry buildings
MSc Structural thesis, Department of Civil engineering, University of Semnan
Online since: January 2015
Authors: Alexander S. Gorshkov, Ekaterina Ivanova
The situation in Finland] (2010) Magazine of Civil Engineering, 1, pp. 7-8.
[12] Vatin, N.I., Nemova, D.V., Rymkevich, P.P., Gorshkov, A.S.: Influence of building envelope thermal protection on heat loss value in the building (2012) Magazine of Civil Engineering, No.8, рр. 4-14
(rus) [21] Gorshkov, A.S.: The energy efficiency in the field of construction: questions of norms and standarts and solutions for the reduction of energy consumption at buildings (2010) Magazine of Civil Engineering, No.1, рр. 9-13
Vliyanie rastvornyh shvov kladki na parametry teplotehnicheskoy odnorodnosti sten iz gazobetona [The influence of mortar joints of masonry on the parameters of the thermal uniformity of the walls of aerated autoclaved concrete] (2010) Magazine of Civil Engineering, No.3, рр. 39-42.
[“To the question of the calculation of the reduced thermal resistance of frame structures”] (2010) Magazine of Civil Engineering, No.8, рр. 21-27.
[12] Vatin, N.I., Nemova, D.V., Rymkevich, P.P., Gorshkov, A.S.: Influence of building envelope thermal protection on heat loss value in the building (2012) Magazine of Civil Engineering, No.8, рр. 4-14
(rus) [21] Gorshkov, A.S.: The energy efficiency in the field of construction: questions of norms and standarts and solutions for the reduction of energy consumption at buildings (2010) Magazine of Civil Engineering, No.1, рр. 9-13
Vliyanie rastvornyh shvov kladki na parametry teplotehnicheskoy odnorodnosti sten iz gazobetona [The influence of mortar joints of masonry on the parameters of the thermal uniformity of the walls of aerated autoclaved concrete] (2010) Magazine of Civil Engineering, No.3, рр. 39-42.
[“To the question of the calculation of the reduced thermal resistance of frame structures”] (2010) Magazine of Civil Engineering, No.8, рр. 21-27.
Online since: May 2012
Authors: Rostislav Drochytka, Vit Černý, Karel Kulísek
The use of anthracite fly ash for the production of autoclaved aerated concrete
Rostislav Drochytka1,a, Vít Černý2,b and Karel Kulísek3,c
1Brno University of Technology, Faculty of Civil Engineering, Institute of Technology of Building Materials and Components, Veveří 331/95, 602 00 Brno, Czech Republic
2Brno University of Technology, Faculty of Civil Engineering, Institute of Technology of Building Materials and Components, Veveří 331/95, 602 00 Brno, Czech Republic
3Brno University of Technology, Faculty of Civil Engineering, Institute of Technology of Building Materials and Components, Veveří 331/95, 602 00 Brno, Czech Republic
adrochytka.r@fce.vutbr.cz, bcerny.v@fce.vutbr.cz, ckulisek.k@fce.vutbr.cz
Keywords: Ash, power plant, unburned residues, legislation, autoclaved cellular concrete
Abstract Burning high-quality anthracite coal produces ash with a high content of unburned residues, which in many cases permanently exceeds 20%.
Online since: August 2012
Authors: Juan Liu
Architectural design is the construction of the soul, which runs through the entire construction process: from design inception to completion of the project delivery, to the use phase of the maintenance project, or even related to the project later removed.It should be noted that we here that the architectural design, including planning, design, structural design, drainage design, electrical lighting design, heating design, and so on.Architectural design is to achieve sustainable development, civil engineering an important step.In the new situation, how to use features from the building, structure, foundation type, building materials selection, the selection of construction equipment and other aspects into account, both to meet the construction specifications of security, and reducing construction costs andadapt to the "three low three-high" based on low-carbon economy requirements, architectural design work is research and development.
The development of low-carbon economy to adapt to the requirements of green building design At present, the civil engineering to achieve the performance of low-carbon economy is one of the construction of green buildings, it refers to people with healthy, comfortable and safe living, working and activities of the space, while in construction safety life cycle to achieve higherresource utilization, with minimum impact on the environment of buildings, green building is also known as eco-building, sustainable construction.
At present, the transition to a low carbon city has become the world's urban development trend, the smooth transition of a city of economic growth, can become a livable city depends largely on its low-carbon economy in response to temporary adjustmentscapacity.For the construction industry, building low-carbon design is the key to low-carbon economic development, in the new situation, you need institutional innovation, excellence mechanism to change the concept, from the overall concept, the system theory point of view, enhance building design, construction,material procurement, housing and other aspects of the use of communication and cooperation, to the overall combination of theory and reductionism, the building of low carbon design as an important strategic task, step by step through the construction of green residential building design, energy-saving apartments, lowCarbon area, low-carbon campus, low-carbon industrial park, low-carbon city, to make our civil engineering construction
The development of low-carbon economy to adapt to the requirements of green building design At present, the civil engineering to achieve the performance of low-carbon economy is one of the construction of green buildings, it refers to people with healthy, comfortable and safe living, working and activities of the space, while in construction safety life cycle to achieve higherresource utilization, with minimum impact on the environment of buildings, green building is also known as eco-building, sustainable construction.
At present, the transition to a low carbon city has become the world's urban development trend, the smooth transition of a city of economic growth, can become a livable city depends largely on its low-carbon economy in response to temporary adjustmentscapacity.For the construction industry, building low-carbon design is the key to low-carbon economic development, in the new situation, you need institutional innovation, excellence mechanism to change the concept, from the overall concept, the system theory point of view, enhance building design, construction,material procurement, housing and other aspects of the use of communication and cooperation, to the overall combination of theory and reductionism, the building of low carbon design as an important strategic task, step by step through the construction of green residential building design, energy-saving apartments, lowCarbon area, low-carbon campus, low-carbon industrial park, low-carbon city, to make our civil engineering construction
Online since: June 2014
Authors: Mohamad Al Ali
Compressed Thin-Walled Cold-Formed Steel Members
with Closed Cross-Sections
Mohamad Al Ali1,a*
1 Technical University of Košice, Faculty of Civil Engineering, Vysokoškolská 4, Košice, Slovakia
a mohamad.alali@tuke.sk
Keywords: thin-walled profiles, cold-formed profiles, initial imperfections, experimental research
Abstract.
Theory and design development of thin-walled cold-formed steel members and profiles creates a certain knowledge base for their practical application in civil engineering.
Al Ali et al.: Analysis of the resistance of thin-walled cold-formed compressed steel members with closed cross-sections, Part 1: Magazine of Civil Engineering, No 5/2013, p. 38-43
Theory and design development of thin-walled cold-formed steel members and profiles creates a certain knowledge base for their practical application in civil engineering.
Al Ali et al.: Analysis of the resistance of thin-walled cold-formed compressed steel members with closed cross-sections, Part 1: Magazine of Civil Engineering, No 5/2013, p. 38-43
Online since: February 2013
Authors: Shu Hui Xu, Guo Qiang Yang
Numerical Simulation of Heat Transfer Characteristics of Melting Process of Paraffin Heat Storage Ball
Shuhui Xu 1, a, Guoqiang Yang 2, b
1 Beijing University of Civil Engineering and Architecture, No. 1, Zhanlanguan Road, Xicheng District, Beijing City, China
2 Beijing University of Civil Engineering and Architecture, No. 1, Zhanlanguan Road, Xicheng District, Beijing City, China
axushuhui@bucea.edu.cn, byangguoqiang198612@163.com
Keywords: paraffin, heat storage ball, heat transfer of phase change, numerical simulation
Abstract.
In recent yeas, the heat storage technology has an extensive application prospect in many fields such as the use of solar energy, peak - load shifting of Power, the recycling utilization of waste heat and energy conservation of heating and air conditioning of industrial and civil buildings [1].
Acknowledgements Project supported by the Beijing Municipal Commission of Education (KM201110016002), and Beijing Municipality Key Lab of Heating, Gas Supply, Ventilating and Air Conditioning Engineering.
In recent yeas, the heat storage technology has an extensive application prospect in many fields such as the use of solar energy, peak - load shifting of Power, the recycling utilization of waste heat and energy conservation of heating and air conditioning of industrial and civil buildings [1].
Acknowledgements Project supported by the Beijing Municipal Commission of Education (KM201110016002), and Beijing Municipality Key Lab of Heating, Gas Supply, Ventilating and Air Conditioning Engineering.
Online since: February 2012
Authors: R. Malathy, P.M. Shanmugavadivu
Effect of Physical Properties of Manufactured Sand as fine aggregate in Elastic and Shrinkage Properties of Concrete and Mortar
P.M.Shanmugavadivu1.a and R.Malathy2.b
1Research scholar, Asst.Professor, Department of Civil Engineering, Sona College of Technology, Salem-05, Tamil Nadu, India
2Professor, Dean (R&D), Department of Civil Engineering, Sona College of Technology, Salem, Tamil Nadu, India
avadivu72@gmail.com, bdr.malathyramesh2009@gmail.com
Key words: Manufactured sand, Natural sand, Split tensile strength, Modulus of elasticity and Drying Shrinkage
Abstract.Common river sand is expensive due to excessive cost of transportation from natural sources.
Norvell et al (2007) “Influence of Clays and Clay-Sized particles on Concrete Performance”, Journal of materials in Civil Engineering ASCE/ December 2007
Norvell et al (2007) “Influence of Clays and Clay-Sized particles on Concrete Performance”, Journal of materials in Civil Engineering ASCE/ December 2007
Online since: November 2006
Authors: Seung Yong Lee, Cheol Woo Park, Myung Gu Lee
Analysis of Cracks and Stresses of Welded Attachments on Full-scale
Plate Girder under Fatigue Loading
Myung-Gu Lee1,a , Seung-Yong Lee2, b and Cheolwoo Park3,c
1
Department of Safety and Health, Seoul Health College, Sungnam, 461-713 Korea
2
Department of Civil Engineering, Chungju National University, Chungju, 380-702 Korea
3
Department of Civil Engineering, Kangwon National University, Samcheok 245-711 Korea
a
lmg@sh.ac.kr, b lsy0401@hanmail.net, c tigerpark@kangwon.ac.kr
Keywords: Fatigue cracks, principal stresses, fatigue loading, welded attachments
Abstract.
J of Korean Society Civil Engineers Vol. 21, No. 1-A, (2001) pp. 133
J of Korean Society Civil Engineers Vol. 21, No. 1-A, (2001) pp. 133