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侯建元

侯建元教授
侯建元教授

侯建元 HOU, Chien-Yuan

土木工程學系教授

校內分機4981
電子信箱cyhou@ms15.hinet.net
領域專長Low Cycle Fatigue of Steel Structures、Computation Methods for Fatigue Mechanics

學經歷與教學

學歷

  • 1985 國立成功大學土木工程學系學士
  • 1987 國立成功大學工程科學系碩士
  • 1994 美國伊利諾大學香檳分校土木工程學系博士

教學課程

  • 工程數學(上、下)
  • 機率與統計
  • 土木工程設計與實作
  • 地震與建築
  • 奧秘宇宙

經歷

  • 2001.02–2004.01 致遠管理學院助理教授
  • 2004.02–2008.05 致遠管理學院副教授
  • 2008.06–2008.07 致遠管理學院教授
  • 2008.08–2010.07 國立暨南國際大學助理教授
  • 2010.08–2019.07 國立暨南國際大學副教授
  • 2019.08–現今 國立暨南國際大學教授

研究與興趣

  • Low Cycle Fatigue of Steel Structures
  • Computation Methods for Fatigue Mechanics

國內外期刊

  1. Hou, C.-Y., “Computer Simulation of Weld Toe Stress Concentration Factor Sequence for Fatigue Analysis”, accepted by International Journal of Structural Integrity. (EI, ESCI)
  2. Hou, C.-Y., Lee Y.-F., Peng, Y.-H., “Fatigue Damage Analysis of Steel Components Subjected to Earthquake Loadings”, International Journal of Structural Integrity, Vol. 10, pp. 25–40, 2019. (EI, ESCI)
  3. Hou, C.-Y., “Plasticity-Induced Crack Closure from Surface to Deep Interior Locations – A Three-Dimensional Finite Element Study”, Engineering Fracture Mechanics, Vol. 195, pp. 186–199, 2018. (EI, SCI)
  4. Hou, C.-Y., “Various Remeshing Arrangements for Two-Dimensional Finite Element Crack Closure Analysis”, Engineering Fracture Mechanics, Vol. 170, pp. 59–76, 2017. (EI, SCI)
  5. Hou, C.-Y., “Development of a Varying Mesh Scheme for Finite Element Crack Closure Analysis”, Engineering Fracture Mechanics, Vol. 148, pp. 42–59, 2015. (EI, SCI)
  6. Hou, C.-Y., “Behavior Explanation and a New Model for Nonlinear Viscous Fluid Dampers with a Simple Annular Orifice”, Archive of Applied Mechanics, Vol. 82, pp. 1–12, 2012.
  7. Hou, C.-Y., “Simulation of Surface Crack Shape Evolution Using the Finite Element Technique and Considering the Crack Closure Effects”, International Journal of Fatigue, Vol. 33, pp. 719–726, 2011.
  8. Hou, C.-Y., “Simultaneous Simulation of Closure Behavior and Shape Development of Fatigue Surface Cracks”, International Journal of Fatigue, Vol. 30, pp. 1039–1046, 2008.
  9. Hou, C.-Y., “Fluid Dynamics and Behavior of Nonlinear Viscous Fluid Dampers”, Journal of Structural Engineering, Vol. 134, pp. 56–63, 2008. (EI, SCI)
  10. Hou, C.-Y., Hsu, D.-H., Lee, Y.-F., Chen, H.-Y., and Lee J.-D., “Shear-Thinning Effects in Annular-Orifice Viscous Fluid Dampers”, Journal of the Chinese Institute of Engineers, Vol. 30, No. 2, pp. 275–287, 2007. (EI, SCI)
  11. Hou, C.-Y., “Fatigue Analysis of Welded Joints with the Aid of Real Three-Dimensional Weld Toe Geometry”, International Journal of Fatigue, Vol. 29, No. 4, pp. 772–785, 2007. (EI, SCI)
  12. 李永峰、侯建元、徐德修,「足尺寸液流阻尼器特性之認證測試及應用設計」,結構工程,第二十一卷,第三期,第 116–128 頁,民國九十五年。
  13. Hou, C.-Y., Hsu, D.-S., and Chen, H.-Y., “Experimental Verification of the Restoring-Stiffness Concept Used in Fluid Dampers for Seismic Energy Dissipation”, The Structural Design of Tall and Special Buildings, Vol. 14, pp. 1–13, 2005. (EI, SCI)
  14. Hou, C.-Y., “Three-Dimensional Finite Element Analysis of Fatigue Crack Closure Behavior in Surface Flaws”, International Journal of Fatigue, Vol. 26, pp. 1225–1239, 2004. (EI, SCI)
  15. 徐德修、李永峰、王冠凱、侯建元,「液流阻尼器減振實體測試之研究」,結構工程,第十九卷,第三期,第 43–45 頁,民國九十三年。
  16. 徐德修、李永峰、李俊德、侯建元,「錘撞試驗在液流阻尼器特性測試之應用」,中國土木水利工程學刊,第十六卷,第三期,第 477–485 頁,民國九十三年。
  17. Hsu, D.-S., Hou, C.-Y., Yeh, M.-C., and Yeh, C.-S., “A Mechanical-Type, Decision-Making Device for Structural Control”, Journal of the Chinese Institute of Engineers, Vol. 25, No. 6, pp. 669–677, 2002. (EI, SCI)
  18. 徐德修、侯建元、李永峰、周尚儀,「液流阻尼器高頻特性之研究」,結構工程,第十五卷,第三期,第 3–19 頁,民國八十九年。
  19. Hou, C.-Y. and Charng, J.-J., “Estimation of Fatigue Crack Growth Behavior in a Residual Stress Field Using the Modified Strip-Yield Model”, ASTM STP 1332 Fatigue and Fracture Mechanics, pp. 516–534, 1999. (EI)
  20. Hou, C.-Y. and Charng, J.-J., “Models for the Estimation of Weldment Fatigue Crack Initiation Life”, International Journal of Fatigue, Vol. 19, pp. 537–541, 1997. (EI, SCI)
  21. Hou, C.-Y. and Charng, J.-J., “Estimation of Plasticity-Induced Crack Closure in a Pre-Existing Plastic Zone”, International Journal of Fatigue, Vol. 18, pp. 463–474, 1996. (EI, SCI)
  22. Hou, C.-Y. and Lawrence, F. V., “Crack Closure in Weldments”, Fatigue and Fracture of Engineering Materials and Structures, Vol. 16, pp. 683–693, 1996. (EI, SCI)
  23. Hou, C.-Y. and Lawrence, F. V., “A Crack Closure Model for the Fatigue Behavior of Notched Components”, Advances in Fatigue Lifetime Predictive Techniques, ASTM STP 1292, pp. 116–135, 1996. (EI)
  24. Stambaugh, K. A., Lesson, D. H., Lawrence, F. V., Hou, C.-Y., and Banas, G., “Reduction of S-N Curves for Ship Structural Details”, Welding Research Council Bulletin, No. 398, pp. 2–73, 1995. (EI)

國內外研討會

  1. Hou, C.-Y., Hsu, D.-H., Lee, Y.-F., and Chen, H.-Y., “Mechanisms to Cause the Nonlinear Behavior of Fluid Dampers”, The 7th Conference on Structural Engineering, DaShi, 2004.
  2. Hsu, D.-S., Lee, Y.-F., Wang, G.-K., and Hou, C.-Y., “Shaking Table Test of Full Scale Structure Controlled with Fluid Dampers”, The Ninth East Asia-Pacific Conference on Structural Engineering and Construction, Bali, Indonesia, pp. VID1–VID7, 2003.
  3. 徐德修、李永峰、李俊德、侯建元,「錘撞試驗在液流阻尼器之特性測試」,中華民國第二十七屆全國力學會議,台南,第 540–547 頁,2003。
  4. Hou, C.-Y., Hsu, D.-S., and Chen, H.-Y., “Restoring-Stiffness Behavior of Viscous Fluid Damper for Seismic Energy Dissipation in Engineering Structures”, The 6th National Conference on Structural Engineering, Kenting, Taiwan, Paper No. M46, 2002.
  5. Deh-Shiu Hsu, Chien-Yuan Hou, Yung-Feng Lee, Shang-Yi Chou, and Sy-Yuan Lu, “Development of High Performance Fluid Damper”, The Eighth East Asia-Pacific Conference on Structural Engineering and Construction, Singapore, Paper No. 1026, 2001.
  6. Hou, C.-Y. and Lawrence, F. V., “Computer Simulation of Weldment Fatigue Life”, Proceedings of the 1997 15th ASCE Structures Congress, Part 2, pp. 1255–1259, 1997. (EI)
  7. Hsu, D.-S., Hou, C.-Y., Chen J.-L., and Yeh, C.-S., “High Pressure Servo-Mechanism Structural Control System”, 11th World Conference on Earthquake Engineering, Acapulco, Paper No. 259, 1996.
  8. Hou, C.-Y. and Lawrence, F. V., “A Model for Weldment Fatigue Based on Crack-Closure Concepts”, Proceedings of the 12th International Conference on Offshore Mechanics and Arctic Engineering, Glasgow, pp. 513–528, 1993. (EI)

專利與技術移轉

  1. 侯建元、徐德修,「土木建築結構之強效式液流阻尼器(三)」,中華民國發明專利,公告編號 561216。
  2. 侯建元、徐德修,「土木建築結構之強效式液流阻尼器(二)追加(一)」,中華民國發明專利第 131186 號,民國九十年。
  3. 侯建元、徐德修,「土木建築結構之強效式液流阻尼器(二)」,中華民國發明專利第 131186 號,民國九十年。
  4. 徐德修、侯建元,「應用於土木建築結構之液流阻尼器」,中華民國發明專利第 102457 號,民國八十八年。

執行計畫

科技部/國科會計畫

  1. 疲勞裂紋閉合效應的次表面現象——以有限元素法分析,國科會專題研究案,計畫主持人,110-2221-E-260-009。
  2. 曲線裂紋閉合效應的有限元素分析,國科會專題研究案,計畫主持人,109-2221-E-260-004。
  3. 三維有限元素裂紋閉合分析平行化程式的研發,國科會專題研究案,計畫主持人,105-2918-I-260-002。
  4. 高計算效率的有限元素裂紋閉合計算程序,國科會專題研究案,計畫主持人,104-2221-E-260-021。
  5. 有限元素裂紋閉合分析之移動網格技術的改進,國科會專題研究案,計畫主持人,103-2221-E-260-019。
  6. 含裂紋鋼構件行為之有限元素彈塑性分析,國科會專題研究案,計畫主持人,102-2221-E-260-023。
  7. 有限元素裂紋閉合分析的新計算程序,國科會專題研究案,計畫主持人,101-2221-E-260-026。
  8. 加勁阻尼器的疲勞分析,國科會專題研究案,計畫主持人,99-2221-E-260-026。
  9. 非線性黏滯性液體阻尼器的數學模型,國科會專題研究案,計畫主持人,NSC97-2221-E-260-032。
  10. 三維表面疲勞裂紋之裂紋閉合與形狀演變之模擬,國科會專題研究案,計畫主持人,NSC96-2221-E-434-007,96.08.01–97.07.31。
  11. 結構消能用液體阻尼器的流體動力分析,國科會專題研究案,計畫主持人,NSC93-2211-E-434-008,93.08.01–94.07.31。
  12. 焊接構件之疲勞裂紋萌生位址,國科會專題研究案,計畫主持人,NSC92-2211-E-434-008,92.08.01–93.07.31。
  13. 防災重要建築物之耐震對策(III)——子計畫七:結構液流阻尼器在重要公共建築物之耐震應用設計,國科會專題研究案,共同主持人,NSC91-2211-E-434-082,91.08.01–92.07.31。
  14. 防災重要建築物之耐震對策(II)——子計畫八:結構液流阻尼器在重要公共建築物之耐震應用設計,國科會專題研究案,共同主持人,NSC90-2211-E-434-071,90.08.01–91.07.31。

其他委辦計畫

  • 「載荷 100 噸級液流阻尼器特性試驗及技術推廣之預備工作」,中興工程顧問社委託專案研究計畫,ST-6195,共同主持人,92.06.01–93.05.31。