All Issue

2019 Vol.12, Issue 1

Original Article

31 March 2019. pp. 1-9
Abstract
References
1
Chee, R. K. W. (1982). Live-bed scour at bridge piers. Report No. 290. School of Engineering, University of Auckland. Auckland, New Zealand.
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ChiewY. M. (1984). Local scour at bridge piers. Report No 355. Depaðment of Civil Engineering. University of Auckland. New Zealand.
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Chnha, L. V. (1975). Time Evolution of Local Scour. The 16th IAHR Congress Proceedings, Sao Paulo.
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Choi, S. and Cheong, S. (2006). Prediction of local scour around bridge piers using artificial neural networks. Journal of the AWRA. 42(2): 487-494.
10.1111/j.1752-1688.2006.tb03852.x
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Dey, S., Bose, S. K., and Sastry, G. L. N. (1995). Clearwater scour at circular piers-A model. Journal of Hydraulic Engineering- ASCE. 121(12): 869-876.
10.1061/(ASCE)0733-9429(1995)121:12(869)
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Ettema, R. (1980). Scour at bridge piers. Report No. 216. University of Auckland. New Zealand.
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Johnson, P. (1992). Reliability Based Pier Scour Engineering. J. Hydraul. Eng., 118(10): 1344-1358. 10.1061/(ASCE) 0733-9429(1992)118:10(1344).
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Lai, J., Chang, W., and Yen, C. (2009). Maximum Local Scour Depth at Bridge Piers under Unsteady Flow. J. Hydraul. Eng. 10.1061: 609-614.
10.1061/(ASCE)HY.1943-7900.0000044
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Laursen, E. M. (1963). An Analysis of Relief Bridge Scour. Journal of the Hydraulics Division. 89(3): 93-118.
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Lee, S. S. (2001). Effect of local scour depth reduction around multiple bridge pier using circular collar. M. S. Dissertation. Hongik University.
11
Lim, J. H. (2002). The Experimental Study of Scour Depths due to Piers at Small Streams in Mountainous Areas. M. S. Dissertation. Dankook University.
12
Melville, B. and Chiew, Y. (1999). Time Scale for Local Scour at Bridge Piers. J. Hydraul. Eng. 1(59): 59-65. 10.1061/125.
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Mia, M. and Nago, H. (2003). Design Method of Time-Dependent Local Scour at Circular Bridge Pier. J. Hydraul. Eng., 6(420): 420-427. 10.1061/129.
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Min, B. Y. (2017). Assessment of Applicability for Prediction Formulas of Scour Depth around Pier. M. S. Dissertation. Chungbuk University.
15
Sheppard, D. M., Odeh, M., and Glasser, T. (2004). Large scale clear-water local pier scour experiments. Journal of Hydraulic Engineering-ASCE. 130(10): 957-963.
10.1061/(ASCE)0733-9429(2004)130:10(957)
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Sheppard, D. M. and Miller, W. (2006). Live-bed local pier scour experiments. Journal of Hydraulic Engineering-ASCE. 132(7): 635-642.
10.1061/(ASCE)0733-9429(2006)132:7(635)
17
Park, J. W. (2012). Application Evaluation of Equation by the Scour Depth Estimation in Bight River. M. S. Dissertation. Kangwon University.
18
You, J. S. (1997). In-Situ Measurement and Applicability of Bridge Scouring Depths. M. S. Dissertation. Myongji University.

Korean References Translated from the English

1
민병윤 (2017). 교각세굴심 산정공식의 적용성 평가. 충북대학교 석사학위논문.
2
박제완 (2012). 하천 만곡부의 세굴심 산정을 위한 산정식의 적용성 평가. 강원대학교 석사학위논문.
3
유준식 (1996). 현장에서의 세굴깊이 측정 및 적용성 검토. 명지대학교 석사학위논문.
4
이성수 (2001). 원환을 이용한 연속교각에서의 국부세굴심 감소효과. 홍익대학교 석사학위논문.
5
임준홍 (2002). 산지 소하천에서의 교각세굴심에 관한 실험적 연구. 단국대학교 석사학위논문.
Information
  • Publisher :Korean Society of Disaster and Security
  • Publisher(Ko) :한국방재안전학회
  • Journal Title :Journal of Korean Society of Disaster and Security
  • Journal Title(Ko) :한국방재안전학회 논문집
  • Volume : 12
  • No :1
  • Pages :1-9
  • Received Date : 2019-02-27
  • Accepted Date : 2019-03-20