PERTANIKA JOURNAL OF TROPICAL AGRICULTURAL SCIENCE

 

e-ISSN 2231-8542
ISSN 1511-3701

Home / Regular Issue / / J

 

J

J

Pertanika Journal of Tropical Agricultural Science, Volume J, Issue J, January J

Keywords: J

Published on: J

J

  • Alcudia, A. D., Stewart, R. R., Eliuk, N., & Espersen, R. (2007). Vibration and air pressure monitoring of seismic sources. CREWES Research Report, 19, 1-14.

  • Al-Hunaidi, M. O. (1994). Evaluation of appropriate sample size for measurement of vibration levels induced by rail transit vehicles. Canadian Acoustics, 22(3), 181-182.

  • Avellan, K., Belopotocanova, E., & Puurunen, M. (2017). Measuring, monitoring and prediction of vibration effects in rock masses in near-structure blasting. Procedia Engineering, 191, 504-511. https://doi.org/10.1016/j.proeng.2017.05.210

  • Bahrekazemi, M. (2004). Train-induced ground vibration and its prediction (PhD thesis). Royal Institute of Technology, Stockholm, Sweden. Retrieved September 29, 2019, from http://www.gatewaycog.org/media/userfiles/subsite_9/files/rl/HSRReferenceMaterialsReportsMapsandOtherHSTSections/References-Train-Induced_Ground_Vibration_ and_Its_Prediction_2004.pdf

  • British Standard. (2008). BS 6472-1: Measurement and evaluation of human exposure to whole-body mechanical vibration and repeated shock. Retrieved September 19, 2019, from https://www.standardsuk.com/products/BS-6472-1-2008

  • Cenek, P. D., Sutherland, A. J., & McIver, I. R. (2012). Ground vibration from road construction (No. 485). The National Academies of Sciences, Engineering, and Medicine.

  • Deutsches Institut für Normung. (1999). DIN 4150-3: Structural vibrations – Part 3: Effects of vibration on structures. Retrieved September 19, 2019, from https://codehub.building.govt.nz/resources/din-4150-3-1999/

  • Department of Environment Malaysia, (2007). The planning guidelines for vibration limits and control in the environment. Ministry of Natural Resources and Environment. . Retrieved October 2, 2018, from https://environment.com.my/wp-content/uploads/2016/05/Vibration.pdf

  • Eitzenberger, A. (2008). Train-induced vibrations in tunnels–A review, division of mining and geotechnical engineering, Department of Civil, Mining and Environmental Engineering, Luleå University of Technology (Technical Report). Retrieved September 30, 2019, from https://www.diva-portal.org/smash/get/diva2:996052/FULLTEXT01.pdf

  • ESCAP. (1996). Trans-Asian railway route requirements: development of the Trans-Asian railway in the Indo-China and ASEAN subregion volume 2. United Nation Economic and Social Commission for Asia and the Pacific. Retrieved January 30, 2020, from https://www.unescap.org/sites/default/d8files/knowledge-products/Trans-Asian-Railway-Route-Requirements-Volume-2.pdf

  • Garg, P. (2017). Displacement measurement using a laser Doppler vibrometer mounted on an unmanned aerial vehicle (Master dissertation). University of the New Mexico, USA. Retrieved September 19, 2019, from https://digitalrepository.unm.edu/cgi/viewcontent.cgi?article=1392&context=ece_etds

  • Hajek, J. J., Blaney, C. T., & Hein, D. K. (2006, September 17-20). Mitigation of highway traffic-induced vibration. In 2006 Annual Conference of the Transportation Association of Canada (pp. 1-13). Charlottetown, Prince Edward Island, Canada.

  • Hanson, C. E. ,Tower, D. A., & Mesiter, L. D. (2006). Transit noise and vibration impact assessment. Office of Planning and Environment, Federal Transit Administration (FTA). Retrieved June 02, 2020, from https://docs.vcrma.org/images/pdf/planning/ceqa/FTA_Noise_and_Vibration_Manual.pdf

  • Hemsworth, B. (2000). Reducing groundborne vibrations: state-of-the-art study. Journal of Sound and Vibration, 231(3), 703-709. https://doi.org/10.1006/jsvi.1999.2642

  • Huang, Z. (2016). Intergrated railway remote condition monitoring (Doctoral dissertation). The University of Birmingham, England. Retrieved June 20, 2019, from https://etheses.bham.ac.uk/id/eprint/7904/1/Huang17PhD.pdf

  • Hunt, H. E., & Hussein, M. F. (2007). Ground-borne vibration transmission from road and rail systems-prediction and control. In M. J. Crocker (Ed.), Handbook of Noise and Vibration Control (pp. 1458-1469). John Wiley & Sons, Inc.

  • ISO. (1997). ISO 2631-1:1997(en) Mechanical vibration and shock — Evaluation of human exposure to whole-body vibration — Part 1: General requirements. International Organization for Standardization. Retrieved September 19, 2019, from https://www.iso.org/standard/7612.html

  • Jiang, T., & Zhang, X. (2004, August 1-6). In situ experiments and numerical assessment of environmental vibration induced by urban viaduct rail transit in Shanghai. In 13th World Conference on Earthquake Engineering, Canada. (pp. 1-11). Vancouver, Canada.

  • Jones, C. J. C., & Block, J. R. (1996). Prediction of ground vibration from freight trains. Journal of Sound and Vibration, 193(1), 205-213. https://doi.org/10.1006/jsvi.1996.0260

  • Kempfert, H. G., & Gebreselassie, B. (2006). Material properties of soft soils. In excavations and foundations in soft soils (pp. 11-55). Springer Science & Business Media.

  • Khoo, C. M., Gopalan, T., Rahman, N. A. A., & Mohamad, H. (2019). volume loss caused by tunnelling in Kenny hill formation. International Journal, 16(54), 164-169. https://doi.org/10.21660/2019.54.8316

  • Lazi, M. K. A. M., Mustafa, M., & Abd Rahman, Z. (2016). Assessing pedestrian behavior and walking speed on staircase: A Review. In M. Yusoff, N. Hamid, M. Arshad, A. Arshad, A. Ridzuan & H. Awang (Eds.), International Civil and Infrastructure Engineering Conference (InCIEC) (pp. 1019-1029). Springer. https://doi.org/10.1007/978-981-10-0155-0_85

  • Madshus, C., Bessason, B., & Hårvik, L. (1996). Prediction model for low frequency vibration from high speed railways on soft ground. Journal of sound and vibration, 193(1), 195-203. https://doi.org/10.1006/jsvi.1996.0259

  • Malay Mail. (2008, October 10). Your voice readymade train wreck. Malay Mail. Retrieved August 8, 2019, from https://web.archive.org/web/20081013081610/http://www.mmail.com.my/Readymade_train_wreck.aspx.

  • Minitab. (2010). Minitab statistical software, release 16 for windows, State College, Pennysylvania. Retrieved February 15, 2019, from https://www.minitab.com/en-us/products/minitab/

  • Orehov, V. V., Moghanlou, R. N., Negahdar, H., & Varagh, A. M. B. (2012, September 24-28). Investigation effects of trench barrier on the reducing energy of surface waves in soils. In 15th World Conference on Earthquake Engineering (pp. 24-28). Lisbon, Portugal.

  • Paneiro, G., Durão, F. O., e Silva, M. C., & Neves, P. F. (2015). Prediction of ground vibration amplitudes due to urban railway traffic using quantitative and qualitative field data. Transportation Research Part D: Transport and Environment, 40, 1-13. https://doi.org/10.1016/j.trd.2015.07.006

  • Peng, L. C., Leman, M. S., Hassan, K., Nasib, B. M., & Karim, R. (2004). Stratigraphic Lexicon of Malaysia. Geological Society of Malaysia.

  • Persson, N. (2016). Predicting railway-induced ground vibrations. LUND University. February 02, 2019, from http://www.byggmek.lth.se/fileadmin/byggnadsmekanik/publications/tvsm5000/web5212.pdf

  • Roess, R. P., Prssas, E. S., & McShane, W. R. (2006). Traffic engineering (3rd Ed.). Prentice Hall, Inc.

  • Roslan, N. (2017). The potential susceptibility of urban hardrock aquifers to hydraulic and contaminan stresses: The case of Shah Alam, Malaysia (Doctoral dissertation). The University of Birmingham, England. Retrieved September 29, 2019, from https://core.ac.uk/download/pdf/79609683.pdf

  • Sakaue, S., Yao, H., & Suzuki, T. (2012). Applied MEMS Micro-vibration Sensors and Structural Health Monitoring. Technologies Supporting Society and Industry, 58(1), 32-47.

  • Suhairy, S. A. (2000). Prediction of ground vibration from railways. SP Swedish National Testing and Research Institute. Retrieved January 10, 2019, from http://doutoramento.schiu.com/referencias/outras/Suhairy,%20Sinan%20al.pdf

  • Sulaiman, N. (2018). Empirical modelling of ground-borne vibration from road traffic. (Unpublished Doctoral dissertation). University Putra Malaysia, Malaysia. Retrieved October 10, 2019, from http://psasir.upm.edu.my/id/eprint/67898/1/FK%202018%2033%20IR.pdf

  • Tan, Y. C., Gue, S. S., Ng, H. B., & Lee, P. T. (2004, March 16-18). Some geotechnical properties of Klang clay. In Malaysian Geotechnical Conference (pp. 1-7). Sheraton Subang, Malaysia.

  • Watts, G. R. (1990). Traffic induced vibrations in buildings (Research report 246). Transport and Road Research Laboratory, Crowthorne, Berkshire. Retrieved June 06, 2019, from https://www.yumpu.com/en/document/view/25243865/traffic-induced-vibrations-in-buildings-g-r-watts-department-for-

  • White Industrial Seismology Inc. (2009). Mini-seis digital seismograph: Operating manual. Retrieved October 20, 2019, from https://whiteseis.com/MemberPages/docspecs/Mini-Seis%20Manual.pdf

  • With, C., Bahrekazemi, M., & Bodare, A. (2006). Validation of an empirical model for prediction of train-induced ground vibrations. Soil Dynamics and Earthquake Engineering, 26(11), 983-990. https://doi.org/10.1016/j.soildyn.2006.03.005

ISSN 1511-3701

e-ISSN 2231-8542

Article ID

J

Download Full Article PDF

Share this article

Recent Articles