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Hsu, Tung-Wen Professor
Title
Professor
TEL
(04) 2284-0437 ext. 226
E-Mail
Office
Room 226,Civil & Environmental Engineering Building
Record
Ph.D.(1987), Texas A&M University, USA
Web site
 
Experience
Research Areas
Geotechnical Engineering, Asphalt Concrete Mixture
Awards
Selected Publications
● Referred Papers 
1.
Hsu, Tung-Wen and Tsai, Tsung-Han, “Combined Vertical and Radial Consolidation under Time-Dependent Loading,” ASCE, International Journal of Geomechanics, vol. 16, no. 3, 2016. (EI、SCI)
2.
Hsu, Tung-Wen and Liu, Hui-Jye, “Consolidation for Radial Drainage under Time-Dependent Loading,” ASCE,Journal of Geotechnical and Geoenvironmental Engineering, vol. 139, no. 12, pp. 2096-2103, 12 2013. (EI、SCI)
3.
Hsu, Tung-Wen, Yang, Wen-Kai., and Wang, Jian-Xun, “Mechanical Characterization of Superpave Gradation between Passing through and below Restriction Zone,” International Journal of Pavement Research and Technology, vol. 6, no. 5, pp. 539~546, 07 2013. (EI)
4.
Hsu, Tung-Wen, Chen, Shyue-Chein., and Hung, Kuo-Nang, “Performance Evaluation of Asphalt Rubber in Asphalt Porous Concrete Mixtures,” ASCE, Journal of Materials in Civil Engineering, vol. 3, no. 23, pp. 342-349, 03 2011. (EI、JCR)
5.
Hsu, Tung-Wen and Lu, Shuan Chai, “Behavior of One-Dimensional Consolidation under Time-Dependent Loading,” ASCE, Journal of Engineering Mechanics, vol. 4, no. 132, pp. 457-462, 04 2006. (EI、SCI)
6.
Hsu, Tung-Wen, Chen, Yuh-Jyh., and Hung, Way-Chang, “Soil Restraint to Oblique Movement of Buried Pipes in Dense Sand,” ASCE, Journal of Transportation Engineering, vol. 2, no. 132, pp. 175-181, 02 2006. (EI、JCR)
7.
Hsu, Tung-Wen, Chen, Yuh-Jyh and Wu, Chun-Yin, “Soil Friction Restraint of Oblique Pipelines in Loose Sand,” ASCE, Journal of Transportation Engineering, vol. 2, no. 1, pp. 82-87, 01 2001. (EI、JCR)
8.
Hsu, Tung-Wen and Tseng, Kuo-Hung, “Effect of Rest Periods on Fatigue Response of Asphalt Concrete Mixtures,” ASCE, Journal of Transportation Engineering, vol. 122, no. 4, pp. 1-7, 07 1996. (EI、JCR)
9.
Hsu, Tung-Wen, “Soil Restraint against Oblique Motion of Pipelines in Sand,” Canadian Geotechnical Journal,, vol. 33, no. 1, pp. 180-188, 02 1996. (EI、JCR)
10.
Hsu, Tung-Wen, “Rate Effect on Lateral Soil Resistance of Pipelines,” Soil and Foundations, Journal of the Japanese Society of Soil Mechanics and Foundation Engineering, vol. 33, no. 4, pp. 159-169, 12 1993. (EI)
11.
Hsu, Tung-Wen, Tseng, Kuo-Hung., and Kuo, Hsu-Nung, “Loading Frequency Effect on Fatigue Life of Asphalt Concrete Mixtures,” Proceedings of National Science Council, Taipei, Taiwan, R.O.C. , vol. 17, no. 6, pp. 395-402, 11 1993.
● Seminar Papers 
1.
Hsu, Tung-Wen and Jheng, Chun-Ying, “Rutting Behavior between SMA Mixtures with Crumb Rubber Modifiers and Fiber Additives under Repeated Loading,” Proceedings of the 22nd ARRB Conference, Canberra, Australia, Oct. 29-Nov.-2, 2006. (EI)
2.
Hsu, Tung-Wen, Chen, Yuh-Jyh and Wei-Tseng Hung, “Soil Friction Restraint of Oblique Pipelines in Dense Sand,” 13th World Conference on Earthquake Engineering, Vancouver, BC, Canada, Aug. 1-6, 2004.
3.
Hsu, Tung-Wen, Chen, Yuh-Jyh and Gia-Tsen Lee, “Soil Resistance of Obliquely Loaded Pipelines in Loose Sand,” GeoEng2000, An International Conference on Geotechnical & Geological Engineering, Melbourne Convention Centre, Melbourne, Australia, Nov. 19-24, 2000.
4.
Hsu, Tung-Wen, Chen, Yuh-Jyh and Chun-Yin Wu, “Soil Friction Restraint of Oblique Pipelines in Loose Sand,” 12th World Conference on Earthquake Engineering, Auckland, New Zealand, Jan. 30-Feb. 4, 2000.
5.
Hsu, Tung-Wen and Leu, Jeng-Thoa, “Evaluation of Permanent Deformation of Stone Matrix Asphalt Mixtures,” Paper No. 980731, Transportation Research Board, 77th Annual Meeting, January 11-15, 1998. Washington, D.C. ,
6.
Hsu, Tung-Wen, “Dissipated Energy Approach to Fatigue Response of Stone Matrix Asphalt Mixtures,” AIT 40th Year Anniversary, Civil and Environmental Engineering Conference, Vol. II, pp. 25-33, Bangkok, Thailand, November, pp. 8-12, 1999. (Technical Committee Member, Transportation Engineering).
Research Project
Other