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Online since: July 2022
Authors: Mykola L. Zotsenko, Olena V. Mykhailovska
To prevent drilling waste from entering the soil and groundwater, it is necessary to provide an engineering system of organized waste collection.
To establish an engineering geological section and take soil samples, 5 wells with a depth of 10.5 m and 1 well with a depth of 3.0 m were drilled.
In terms of engineering and geological surveys, up to a depth of 10.5 m, five engineering and geological elements have been identified, and up to a depth of 25.5 m, three more engineering and geological elements (IGE): IGE-1a – soil-vegetation layer, chernozem, layer thickness up to 0.4 m.
Collection of scientific works (branch mechanical engineering, construction) 1 (40) (2014) 259–267
Notes in Civil Engineering Conference Paper, 181 (2022) 457–464.
Online since: February 2014
Authors: Abdullah Huda, S. Shaari, Azimah Omar, M.R. Razali, M.R. Taha
Azimah Omar (azimah.ukm@gmail.com), Huda Abdullah*, Mohd Zikri Razali (zik86@yahoo.com) Department of Electrical, Electronics & System Engineering, Faculty of Engineering & Built Environment, University Kebangsaan Malaysia, 43600 Bangi, Selangor D.E., Malaysia S.
Shaari (sahbudin@vlsi.ukm.my) Photonic Technology Laboratory (IMEN), Department of Electrical, Electronics & System Engineering, Faculty of Engineering & Built Environment, University Kebangsaan Malaysia, 43600 Bangi, Selangor D.E., Malaysia M.
Taha (drmrt@eng.ukm.my) Department of Civil & Structural Engineering, Faculty of Engineering & Built Environment, University Kebangsaan Malaysia, 43600 Bangi, Selangor D.E., Malaysia *Corresponding author; email: huda@vlsi.eng.ukm.my REFERENCES [1] Abdullah, H., Ariyanto, N.P., Shaari, S., Yuliarto, B. & Junaidi, S. 2009.
American Journal of Engineering and Applied Sciences 2: 236-240 [2] Abdullah, H., Selmani, S., Norazia, M.N., Menon, P.S., Shaari, S. & Dee, C.F., 2011.
Materials Science Engineering B 163: 194-198.
Online since: December 2012
Authors: Sarim Al-Zubaidy, Serik Tokbolat, Raikhan Tokpatayeva
., Nazarbayev University, School of Engineering, Astana, Kazakhstan, 010000, stokbolat@nu.edu.kz 2 53, Kabanbay Batyr Ave., Nazarbayev University, School of Engineering, Astana, Kazakhstan, 010000, tokpatayeva@gmail.com 3 53, Kabanbay Batyr Ave., Nazarbayev University, School of Engineering, Astana, Kazakhstan, 010000, sal-subaidy@nu.edu.kz Keywords: building orientation, CFD, energy efficiency, low energy design, wind comfort and safety Abstract.
In the past decade, CFD has been applied by engineers, designers and practitioners as a building services engineering tool for evaluating the indoor environment of buildings and its interaction with the building envelope, as well as for investigating the outdoor environment around buildings [12].
[6] Sin Bia, et al, An Integrated Control of Shading Blinds, Natural Ventilation and HVAC Systems for Energy Saving and Human Comfort.IEEE International Conference on Automation Science and Engineering, 2010
CFD As a Building Services Engineering Tool.
Engineering Structures, Vol. 18 No. 11, pp. 861-875, 1996
Online since: March 2017
Authors: Eleftheria Poyiadji, Villy Kontogianni, Nikolaos Nikolaou
Integration of Geohazards in Urban Planning and Management Eleftheria Poyiadji1,2 a *, Dr Villy Kontogianni3,b and Nikolaos Nikolaou1,c 1 Institute of Geology and Mineral Exploration, Greece, Engineering Geologist M.Sc. 2 Earth Observation and Geohazards Expert Group (EOEG), EuroGeoSurveys, the Geological Surveys of Europe, Deputy Chair. 3 Institute of Geology and Mineral Exploration, Greece, Civil Engineer a kynpo@igme.gr, bvilly@igme.gr, cnikolaou@igme.gr Keywords: Geohazards, Urban Planning, Urban Management, PANGEO project Abstract.
A range of geohazard types are observed, including both natural processes such as compaction of deposits on the River Thames flood plain and anthropogenic instability due to water abstraction and recent engineering works.
For this reason, detailed studies are needed depending on the potential hazards and engineering judgment should be the main criterion for hazard and risk assessment.
Engineering Geology 102(2008), pp. 83-84
Proceedings International Symposium on Landslide and Debris Flow Hazard Assessment, National Center for Research on Earthquake Engineering, Taipei, 2004, C1-C17
Online since: September 2021
Authors: Abdul Razak Abdul Karim, Norazzlina M. Sa’don, Siti Rozana Romali
International Journal of Engineering & Technology 7 (2018) 26–30
UNIMAS E-Journal of Civil Engineering Sarawak 6–12 (2015)
An overview of the basic engineering properties of Malaysian peats.
Geotechnical and Geological Engineering 29(6) (2011) 1135–1141
Engineering Properties of Fibrous Peats.
Online since: December 2010
Authors: Chao Pan, Da Gen Weng
Study on Seismic Performance of Coupled Shear Walls with Vertical Dampers Chao Pana, Dagen Wengb State Key Laboratory of Disaster Reduction in Civil Engineering, Tongji University, Shanghai 200092, China pcabaqus@gmail.coma, wdg@tong.edu.cnb Keywords: Shear Wall; Coupling Beam; Vertical slit; Damper Abstract.
[2] Hang Dai, Gui Chen: Journal of Southeast University. (5), p. 58-65 (1992, in Chinese) [3] Xi-lin Lu, Liang Meng: World Information on Earthquake Engineering. (02), p. 22-26 (1995, in Chinese) [4] Xin-jie Wang, Wan-lin Cao, Jian-wei Zhang, et al: World Earthquake Engineering. 23(1), p. 61-66 (2007, in Chinese) [5] Xi-lin Lu, Xiao-han Wu: Earthquake Engineering and Structural Dynamics, 29, p. 1425-1440 (2000)
[6] Lie-ping Ye, Sheng Kang, Yong Zeng: Journal of Tsinghua University. 39(12), p. 79-81 (1999, in Chinese) [7] Ai-qun Li, Da-jun Ding, Zheng-liang Cao: Engineering Mechanics. 12(03), p. 70-76 (1995, in Chinese) [8] Jun Teng, Bo-tao Ma, Zheng-gen Zhou, et al: Earthquake Resistant Engineering and Retrofitting. 29(5), p. 1-6 (2007, in Chinese) [9] H Chung, B Moon, S Lee, et al: The Structural Design of Tall and Special Buildings, 18, p. 807-822 (2009)
[10] S Mazzoni, F Mckenna, M H Scott, et al: Open System for Earthquake Engineering Simulation User Command-Language Manual (2009)
[11] Xi-lin Lu, Wen-sheng Lu: Chinese Quarterly of Mechanics. 26(1), p. 72-80 (2005, in Chinese) [12] Hu Qi, Jing-jiang Sun, Lin Lin: World Earthquake Engineering. 23(4), p. 48-54 (2007, in Chinese) [13] K Beyer, A Dazio, M J N Priestley: Journal of Earthquake Engineering, S1(12), p. 1-33 (2008).
Online since: October 2013
Authors: Huai Chao Yan, Lin Jie Li, Jun Ge Huang
Research and Development of Household Fire Refuge Cabin Huai-chao Yan1, a, Li Lin-jie2,b Huang Jun-ge3,c 1 School of Mechanical Engineering Shanghai Institute of Technology 100#, Haiquan Road, Fengxian District, Shanghai,China 2 School of Mechanical Engineering Shanghai Institute of Technology 100#, Haiquan Road, Fengxian District, Shanghai 3 College of Urban Construction and Safety Engineering Shanghai Institute of Technology 100#, Haiquan Road, Fengxian District, Shanghai achaoge0305@126.com b1204498938@qq.com, chjg@sit.edu.cn Keywords: Mine refuge chamber;household fire extinction cabin;Refuge compartment system;Structure.
Design of intelligent residential anti-theft fire system(In Chinese).Xi'an:Xi'an College of Engineering Science and Technology.2006
[22]Yan-long Ding.Study on Mine Disasters Disaster Prevention System(In Chinese).Liaoning:Liaoning University of engineering and technology.2007
[29]Xiao-guang Yang.Application and Existing Problems of Fire Prevention and Protection Technology of Steel Structure Building(In Chinese).Coal Engineering.2007,(6):p.162-164
[31] Li-an Zhao,Zhen-liang Xu.Brief Analysis on Application of Refuge Chamber in Mine(In Chinese).Coal Engineering.2008(4):p.99-101
Online since: December 2024
Authors: Rahisham Abd Rahman, Nuriziani Hussin, Mohd Uwais Amran, Nurin Ainanie Azizan, Ahmad Nabil Mohd Khalil
Transportation, civil engineering, nuclear power plants, space stations, airplanes, and solar absorption use nanofluids.
Ahmad, “Characteristics of mineral oil-based nanofluids for power transformer application,” International Journal of Electrical and Computer Engineering, vol. 7, no. 3, pp. 1530–1537, Jun. 2017, doi: 10.11591/ijece.v7i3.pp1530-1537
Beroual, “DC breakdown voltage of natural ester oil-based Fe3O4, Al2O3, and SiO2 nanofluids,” Alexandria Engineering Journal, vol. 59, no. 6, pp. 4611–4620, Dec. 2020, doi: 10.1016/J.AEJ.2020.08.016
Nabi, “Effect of surfactant on stability, thermal conductivity, and viscosity of aluminium oxide–methanol nanofluids for heat transfer applications,” Thermal Science and Engineering Progress, vol. 31, Jun. 2022, doi: 10.1016/j.tsep.2022.101302
Yi, "Effect of Fe3O4 nanoparticle concentrations on dielectric property of transformer oil," 2016 IEEE International Conference on High Voltage Engineering and Application (ICHVE), Chengdu, China, 2016, pp. 1-4, doi: 10.1109/ICHVE.2016.7800762.
Online since: November 2025
Authors: Artem Ruban, Viktoriya Pasternak, Oksana Telak, Viktor Kovalchuk, Oleksandr Zemlianskyiy
In Key Engineering Materials. 954 (2023) 167–175.
In Key Engineering Materials. 927 (2022) 77–86.
Chemical Engineering Transactions. 94 (2022) 1021–1026
Modeling in Geotechnical Engineering. 1 (2021) 79–100
Minerals Engineering. 205 (2024) 1–19
Online since: August 2016
Authors: Togay Ozbakkaloglu
Engineering Structures, 49 (2013) 1068-1088
Engineering Structures. 90 (2015) 158-171
Composites part B: Engineering, 38 (2008) 451-466
Advances in Structural Engineering. 18(5) (2015) 715-738
Engineering Structures. 91 (2015) 156-171
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