[1]Beaulieu, A., (2005), Learning SQL, O’Reilly Media, Inc., Sebas¬topoa, CA.
[2]Booch, G., (1994), Object-Oriented Analysis and Design with Appli-ca¬tions(2nd ed.), Benjamin/Cummings, Redwood City, CA.
[3]Breusers, H. N. and Raudkivi, A. J., (1991), “Scouring,” IAHR Hy¬draulic Structure Design Manual, Vol. 2, Belkema.
[4]Burton, K., (2002), .NET Common Language Runtime Unleashed, Sams Publishing, Indianapolis, Indiana.
[5]Champlain, M. and Patrick, B. G., (2005), C# 2.0: Practical Guide for Programmers, Morgan Kaufmann Publisher, San Francisco, CA.
[6]FHWA , (2001), Evaluating Scour At Bridges.
[7]FHWA , (2001), Stream Stability at Highway Structures.
[8]FHWA , (2001), Bridge Scour And Stream Instability Countermea¬sures.
[9]Lin, H.-T., Hsieh, S.-H., and Tsai, I-C., (2005), “Development of a Windows Application for Fast Safety Assessment of Scoured Bridges,” The Eighteenth KKCNN Symposium on Civil Engineer¬ing-NTU33.
[10]Larman, G., (2002), Applying UML and Patterns- An Introduction to Object-Oriented Analysis and Design and the Unified Process(2nd Ed.), Prentice-Hall, Inc., Upper Saddle River, NJ.
[11]Laursen, E. M., (1960), “Scour at Bridge crossings,” Journal of the Hydraulics Division.
[12]Liang, M.-T., Lee, C.-W., Chu, T.-P., and Yeh, C.-J., (2005), “Find¬ing the Weighting Value and Ranking of the Damage Evaluation for Ex¬isting Reinforced Concrete Bridges Using Comparison Matrix Method,” Journal of the Chinese Institute of Engineers, Vol. 28, No. 4, pp. 627-638.
[13]Melville, B. W. and Chiew, Y. M., (1999), “Time scale for local scour at bridge piers,” J. Hydr. Engrg., ASCE, Vol. 125, No. 1, pp. 59-65.
[14]Melville, B. W. and Sutherland, A. J., (1988), “Design method for local scour at bridge piers,” J. Hydr. Engrg, ASCE, Vol. 114, No. 10, pp. 1210-1226.
[15]Raudkivi, A. J. and Ettema, R., (1983), “Effect of sediment gradation on clear water scour, ” J. Hydr. Engrg., ASCE, Vol. 109, No. 3, pp. 338-349.
[16]Shen, H. W., Schneider, V. R., and Karaki, S., (1969), “Local scour around bridge piers,” J. Hydr. Engrg., ASCE, Vol. 95, No. 6, pp. 1919-1940.
[17]余欣穎,(2006),「台灣地區公路橋梁耐震補強優先排序之研究」,國立台北科技大學土木工程系實務專題,宋裕祺教授指導。
[18]吳沛倫,(2000),「不均勻橋墩及群樁基礎之局部沖刷研究」,國立中央大學碩士論文,周憲德教授指導。[19]李鴻源、胡宗義,( 1990),「台灣地區河系沖淤模式之發展與應用-以淡水河大漢溪為應用對象」,中國農業工程學會,土壤沖蝕及河川淤積研討會。
[20]周憲德、吳沛倫、王新貴、張藝馨,(1994),「裸露圓柱橋基之局部沖刷分析」,中國土木水利工程學刊,第十四卷,第四期。[21]周憲德、戴華鍇、陳世清,(1999),「蛇籠保護方式對橋墩局部沖刷之影響」,中國土木水利工程學刊,第十一卷,第三期,第311-316 頁。[22]林呈,(1998),「本省西部重要河川橋樑橋基災害分析與橋基保護工法資料庫系統之建立」,交通部運輸研究所專題研究計畫成果報告。
[23]林高玄,(2004),「基礎裸露橋梁之耐洪能力評估」,國立台灣大學碩士論文,蔡益超教授指導。[24]秦壽康等,(2005),綜合評價原理與應用,電子工業出版社,北京。
[25]國立中央大學災害防治研究中心,(1999),「橋台及橋墩沖刷防治工法之探討」,交通部委託研究計劃。
[26]張文鎰,(1993),「圓形橋墩局部沖刷之模擬與試驗驗證」,國立台灣大學碩士論文,顏清連教授指導。[27]張藝馨,(2000),「不均勻圓形橋墩之局部沖刷研究」,國立中央大學碩士論文,周憲德教授指導。[28]郭亞軍,(2002),綜合評價理論與方法,科學出版社。
[29]陳清泉、蔡益超,(1996),「重要聯外橋梁之安全檢測及評估宣導示範計畫」,交通部科技顧問室研究報告。
[30]顏宏宇,(2005),「河川橋梁下部結構之整體耐洪能力評估」,國立台灣大學碩士論文,蔡益超教授指導。