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An investigation of traffic induced vibration effect on structure and human sensitivity

An investigation of traffic induced vibration effect on structure and human sensitivity / Ong Khang Yoong
Gegaran yang terhasil daripada aktiviti-aktiviti industri seperti pemacuan cerucuk, letupan kuari, trafik dan mesin gegaran akan mengakibatkan ketidakselesaan kepada manusia dan kerosakan kepada struktur bangunan. Dengan itu, satu sistem pencerapan dan analisis gegaran diperlukan untuk menganggarkan kesan-kesan gegaran. Untuk projek ini, sistem pencerapan gegaran trafik telah dijalankan dengan menggunakan sistem μMX. Selepas itu, kesan-kesan gegaran trafik akan dinilai dengan merujuk kepada gambar rajah dan jadual piawaian kerosakan struktur bangunan. Aras gegaran trafik boleh dipengaruhi oleh faktor-faktor seperti keadaaan jalan, kelajuan kenderaan, berat kenderaan, keadaan tanah, sistem ampaian kenderaan dan jarak antara struktur dengan jalan. Bagi projek ini, ciri-ciri gegaran trafik iaitu berat kenderaan dan jarak dari tengah jalan akan dibincangkan. Bagi kajian pertama, data-data gegaran akan dicerap daripada pelbagai kategori kenderaan. Keputusan membuktikan bahawa jika berat kenderaan semakin tinggi, maka aras gegaran akan semakin meningkat. Bagi kajian kedua, data-data gegaran lori besar akan dicerap dengan perubahan jarak dari punca gegaran. Selepas itu, keputusan akan dibandingkan dengan data-data gegaran pergerakan kereta api. Keputusan menunjukkan bahawa bentuk graf taburan halaju puncak bagi kenderaan lori besar adalah agak sama dengan gegaran pergerakan kereta api, walaupun penjanaan tenaga mereka adalah berbeza. Keputusan projek ini dapat digunakan sebagai garis panduan untuk menganggarkan kesan-kesan gegaran trafik kepada struktur bangunan dan manusia yang berhampiran. _______________________________________________________________________________________________________ Vibrations caused by industrial activities such as piling, rock blasting, traffic, and vibrating machinery result as annoyance to human beings and generate possible structural damages. Therefore, vibration monitoring and analysis are required to predict the effects of the vibrations. In this project, measurement of the traffic-induced vibrations has been carried out by using the μMX system. The effects of traffic vibration have been evaluated by using some standard structural damaging figures and tables. Several factors might have contributed to traffic vibration levels, such as road condition, vehicle speed, vehicle weight, soil conditions, vehicle suspension system, and distance between the structure and the road. The characteristics of the traffic vibration in terms of the vehicle weight and distance to road center were discussed. For the first study, vibrations data were collected on different categories of vehicle. The results proved that the heavier the vehicle, the vibration level will be increased. For the second study, truck vibration data were collected with varying distances from the source. Then, the results were compared with the data of train motion induced vibration. The results showed that the trend of the peak velocity distribution graph for truck vehicle was similar with train motion vibration, even though the delivered energy between them was different. The results of this project can be used as a guide in predicting the effects of the traffic induced vibration to the nearby buildings and human beings.
Contributor(s):
Ong Khang Yoong - Author
Primary Item Type:
Final Year Project
Identifiers:
Accession Number : 875002419
Language:
English
Subject Keywords:
Vibrations; industrial; activities
First presented to the public:
5/1/2006
Original Publication Date:
9/14/2020
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Civil Engineering
Citation:
Extents:
Number of Pages - 134
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2020-09-14 16:53:36.264
Submitter:
Mohd Jasnizam Mohd Salleh

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