David Alan Roke, PhD The University of Akron Lehigh University
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1 David Alan Roke, PhD Assistant Professor Civil Engineering Department Auburn Science and Engineering Center The University of Akron Akron, OH Office: (330) Research Experience Education The University of Akron Department of Civil Engineering Assistant Professor (June 2010 Present) Student Advising: Current students - Ali Al-Ateah (PhD, started Spring 2016) - Taha Alyousef (PhD, starting Spring 2016, co-advising with Dr. Ping Yi) - Chibuike Anozie (MS thesis, started Fall 2015) - Vikas Gopagani (MS thesis, started Fall 2015) - Amro Alamri (MS project, started Fall 2015) - Joshua Nine (MS project, started Fall 2015) Graduated students MS theses (4) - Brandon Jeffers (2012), Lucie Blin-Bellomie (2012), M.R. Hasan (2012), Felix Blebo (2013) PhD dissertations (3) - AmirHossein Gandomi (2015), Mehdei Kavaeikivi (2015), Felix Blebo (2015) Undergraduate Senior Honors projects (8) - Aileen Yenco (2011); Josh Weaver (2013); Joshua Graber (2014); Derek Hauff and Nicholas Roth (2015); Simon Beskitt, Samuel Sinclair, and Eric Wickersham (2016) Funded Research: 4. ASME Environmental Engineering Division April 2016-August 2016 High School Student Laboratory Education Module: Use of Abundant Waste Materials in Concrete Mix Design Funded for $5,000 for one PI (me) and one co-pi 3. NSF CMMI REU Supplement May 2015-August 2015 Below-Grade Structural Flexibility Study Funded for $5,000 for one PI (me) and one co-pi 2. NSF CMMI September 2012-August 2015 Performance-Based Evaluation of Self-Centering Concentrically Braced Frames Funded for $297,803 for one PI (me) and three co-pis 1. University of Akron Faculty Research Grant: May 2012-August 2012 Analytical Study of Combined Lateral Load Resisting Systems for Earthquake-Resistant Structures Funded for $10,000 for one PI (me) Lehigh University, Bethlehem, PA Doctor of Philosophy in Structural Engineering September 2010 PhD Dissertation: Damage-Free Seismic-Resistant Self-Centering Steel Concentrically-Braced Frames Dissertation Advisors: Dr. James M. Ricles and Dr. Richard Sause Performed research as part of a multi-million dollar NSF-funded NEESR Small Group project in collaboration with Princeton University and Purdue University Developed performance-based seismic design criteria and a probability-based design procedure for a self-centering concentrically-braced frame (SC-CBF) system that will remain undamaged under the design basis earthquake Designed a 0.6-scale 4-story test specimen to validate analytical studies of the SC-CBF system Defined a test program utilizing hybrid simulation techniques for static and pseudo-dynamic tests with a four-degree-of-freedom experimental substructure Mentored four Research Experience for Undergraduates (REU) students
2 Helped direct the research efforts of a Master of Science student, Nathaniel Gonner, and a Master of Engineering student, Colin Temple Areas of study: Structural dynamics, earthquake-resistant structures, ductile steel structures, steel member behavior, nonlinear analysis, structural reliability, large-scale structural testing University of Pittsburgh, Pittsburgh, PA Master of Science in Civil Engineering August GPA MS Thesis: Three-Dimensional Analysis of Base-Isolated Structures Thesis Advisor: Dr. Morteza A.M. Torkamani Areas of study: Structural dynamics, base isolation, nonlinear analysis University of Pittsburgh, Pittsburgh, PA Bachelor of Science in Engineering, Summa cum Laude December GPA Concentration: Structural Engineering Senior Design Project: Design of a new engineering building at the University of Pittsburgh Professional American Bridge Company, Coraopolis, PA Experience Intern / Junior Engineer (Fall 2002, Summer 2003, Summer 2004) Performed structural steel and concrete designs for bridge erection procedures Assisted development of innovative solutions to difficult design issues for bridge erection Reviewed design calculations of fellow engineers Worked extensively in AutoCAD in both 2-D and 3-D Teaching Experience The University of Akron Department of Civil Engineering Assistant Professor (June 2010 Present) Taught CE 202: Mechanics of Solids, CE 380: Engineering Materials Laboratory, CE 401: Steel Design, CE 604: Dynamics of Structures, CE 694: Advanced Analysis of Steel Structural Members, CE 701: Earthquake Engineering Responsible for development of laboratory experiments (CE 380), lecture material, exams, projects, and grades Mentored a PhD student, Josiah Owusu-Danquah, as part of the the Doctoral Teaching Program (Fall 2015-Spring 2016) Nominated for 2016 Outstanding Teacher Award at The University of Akron Lehigh University Department of Civil and Environmental Engineering Teaching Assistant (Fall 2008, Spring 2009, Fall 2009, Spring 2010) Teaching assistant for CEE 203: Professional Development, CEE 413: Mechanics and Behavior of Structural Members, and CEE 450: Advanced Structural Analysis Responsible for grading homework assignments and term papers Assisted in determining students final semester grades Lehigh University Department of Civil and Environmental Engineering Guest Lecturer (Summer 2006, Spring 2009) Guest lecturer for CEE 159: Structural Analysis I (Summer 2006) Guest lecturer for CEE 414: Steel and Composite Structural Members (February 4, 2009) Guest lecturer for CEE 450: Advanced Structural Analysis I (February 12 & 17, 2009; February 18 & 23, 2010) University of Pittsburgh Department of Civil and Environmental Engineering Teaching Assistant (Spring 2004, Fall 2004, Spring 2005) Teaching assistant for CEE 0119: Computer Methods in Civil Engineering, CEE 1330: Introduction to Structural Analysis, and CEE 1331: Matrix Structural Analysis Recitation instructor for CEE 1330: Introduction to Structural Analysis
3 Journal Publications Conference Proceedings 11. Gandomi, A.H.; Kashani, A.R.; Roke, D.A.; and Mousavi, M. (2016). Optimization of Retaining Wall Design Using Evolutionary Algorithms, Structural and Multidisciplinary Optimization, accepted for publication June 13, Dyanati, M.; Huang, Q.; and Roke, D.A. (2016). Life Cycle Cost-Benefit Evaluation of Selfcentering and Conventional Concentrically Braced Frames, Structure and Infrastructure Engineering, doi: / Kafaeikivi, M.; Roke, D.A.; and Huang, Q. (2016). Seismic Performance Assessment of Self- Centering Dual Systems with Different Configurations, Structures, Vol. 5: pp doi: /j.istruc Gandomi, A.H.; Kashani, A.R.; Roke, D.A.; and Mousavi, M. (2015). Optimization of Retaining Wall Design Using Recent Swarm Intelligence Techniques, Engineering Structures, Vol. 103: pp doi: /j.engstruct Blebo, F.C.; and Roke, D.A. (2015). Seismic-Resistant Self-Centering Rocking Core System, Engineering Structures, Vol 101: pp doi: /j.engstruct Gandomi, A.H.; and Roke, D.A. (2015). Assessment of Artificial Neural Network and Genetic Programming as Predictive Tools, Advances in Engineering Software, Vol. 88: pp doi: /j.advengsoft Dyanati, M.; Huang, Q.; and Roke, D.A. (2015). Seismic Demand Models and Performance Evaluation of Self-Centering and Conventional Concentrically Braced Frames, Engineering Structures, Vol. 84: pp doi: /j.engstruct Chancellor, N.B.; Eatherton, M.R.; Roke, D.A.; and Akbaş, T. (2014). Self-Centering Seismic Lateral Force Resisting Systems: High Performance Structures for the City of Tomorrow, Buildings, 4(3): pp doi: /buildings Gandomi, A.H.; Fridline, M.M.; and Roke, D.A. (2014). Decision Tree Approach for Soil Liquefaction Assessment, The Scientific World Journal, Vol. 2013, Article ID doi: /2013/ Gandomi, A.H.; Roke, D.A.; and Sett, K. (2013). Genetic Programming for Moment Capacity Modeling of Ferrocement Members, Engineering Structures, Vol. 57: pp doi: /j.engstruct Roke, D.A.; and Hasan, M.R. (2012). The Effect of Frame Geometry on the Seismic Response of Self-Centering Concentrically-Braced Frames, International Journal of Civil and Environmental Engineering, Vol. 6: pp Dyanati, M.; Huang, Q.; and Roke, D.A. (2015). Life Cycle Cost Evaluation of Self-centering and Conventional Concentrically Braced Frames, Proceedings of the 12th International Conference on Applications of Statistics and Probability in Civil Engineering, July 2015, Vancouver, Canada. 23. Blebo, F.C.; and Roke, D.A. (2015). Seismic-Resistant Friction-Damped Braced Frame System with Buckling Restrained Columns, Proceedings of the 2015 ASCE Structures Congress, April 2015, Portland, OR. 22. Gandomi, A.H.; and Roke, D.A. (2014). Engineering Optimization using Interior Search Algorithm, Proceedings of the IEEE Symposium Series on Computational Intelligence 2014, December 2014, Orlando, FL. 21. Sause, R.; Ricles, J.M.; Chancellor, N.B.; and Roke, D.A. (2014). Hybrid Simulations of Self- Centering Concentrically-Braced Frames Subject to Extreme Ground Motions, Proceedings of the 10th US National Conference on Earthquake Engineering, July 2014, Anchorage, AK. 20. Dyanati, M.; Huang, Q.; and Roke, D.A. (2014). Structural and Nonstructural Performance Evaluation of Self-Centering Concentrically Braced Frames Under Seismic Loading, Proceedings of the 2014 ASCE Structures Congress, April 2014, Boston, MA. 19. Gandomi, A.H.; and Roke, D.A. (2014). Seismic Response Prediction of Self-Centering Concentrically Braced Frames Using Genetic Programming, Proceedings of the 2014 ASCE Structures Congress, April 2014, Boston, MA. 18. Hasan, M.R.; Roke, D.A.; and Huang, Q. (2013). Quantification of Higher Mode Responses for Steel Self-Centering Concentrically Braced Frames, Proceedings of the 7 th International Structural Engineering and Construction Conference, June 2013, Honolulu, HI. 17. Kafaeikivi, M.; Roke, D.A.; and Huang, Q. (2013). Seismic Performance Assessment of Dual Systems Combining Conventional and Self-Centering Concentrically Braced Frames, Proceedings of the 11 th International Conference on Structural Safety and Reliability, June 2013, New York, NY.
4 16. Dyanati, M.; Huang, Q.; and Roke, D.A. (2013). Seismic Performance and Economic Feasibility Evaluation of Self-Centering Concentrically-Braced-Frame System, Proceedings of the 11 th International Conference on Structural Safety and Reliability, June 2013, New York, NY. 15. Roke, D.A.; Chandra, A.; Huang, Q.; and Sett, K. (2013). Methodology for Life Cycle Cost Assessment of Self-Centering Concentrically Braced Frame Systems, Proceedings of the 10 th International Conference on Urban Earthquake Engineering, March 2013, Tokyo, Japan. 14. Roke, D.A.; and Hasan, M.R. (2012). The Effect of Frame Geometry on the Seismic Response of Self-Centering Concentrically-Braced Frames, Proceedings of the 2012 International Conference on Earthquake and Structural Engineering, February 2012, Kuala Lumpur, Malaysia. 13. Roke, D.; and Jeffers, B. (2012). Analytical Parametric Study of Self-Centering Concentrically- Braced Frames with Friction-Based Energy Dissipation, Proceedings of the 7 th International Conference on Behavior of Steel Structures in Seismic Areas, January 2012, Santiago, Chile. 12. Chancellor, N.B.; Roke, D.A.; Sause, R.; Ricles, J.M.; and Gonner, N.P. (2011). Performance of Steel Self-Centering Braced Frame System During Intense Earthquake and Aftershock Ground Motions, 8 th International Conference on Urban Earthquake Engineering, March 2011, Tokyo, Japan. 11. Sause, R.; Ricles, J.M.; Roke, D.A.; Chancellor, N.B.; and Gonner, N.P. (2010). Seismic Performance of a Self-Centering Rocking Concentrically-Braced Frame, Proceedings of the 9 th U.S. National Conference on Earthquake Engineering, July 2010, Toronto, ON, Canada. 10. Sause, R.; Ricles, J.M.; Roke, D.A.; Chancellor, N.B.; and Gonner, N.P. (2010). Large-Scale Experimental Studies of Damage-Free Self-Centering Concentrically-Braced Frame under Seismic Loading, Proceedings of the 2010 ASCE Structures Congress, May 2010, Orlando, FL, USA. 9. Sause, R.; Ricles, J.M.; Lin, Y.-C.; Seo, C.-Y.; Roke, D.; and Chancellor, B. (2010). Self-Centering Damage-Free Seismic-Resistant Steel Frame Systems, Proceedings of the 5 th International Conference on Earthquake Engineering, March 2010, Tokyo, Japan. 8. Sause, R.; Ricles, J.M.; Lin, Y.-C.; Seo, C.-Y.; Roke, D.A.; Chancellor, B.; and Gonner, N. (2009). Validating Performance of Self-Centering Steel Frame Systems Using Hybrid Simulation, Proceedings of the 3rd International Conference on Advances in Experimental Structural Engineering, October 2009, San Francisco, CA. 7. Roke, D.; Sause, R.; Ricles, J.M.; and Gonner, N. (2009). Damage-Free Seismic-Resistant Self- Centering Steel Concentrically-Braced Frames, Proceedings of the 6 th International Conference on Behavior of Steel Structures in Seismic Areas, August 2009, Philadelphia, PA, USA. 6. Roke, D.; Sause, R.; Ricles, J.M.; and Gonner, N. (2009). Design Concepts for Damage-Free Seismic-Resistant Self-Centering Steel Concentrically-Braced Frames, Proceedings of the 2009 ASCE Structures Congress, April 2009, Austin, TX, USA. 5. Roke, D.; Sause, R.; Ricles, J.M.; and Gonner, N. (2008). Design Concepts for Damage-Free Seismic-Resistant Self-Centering Steel Concentrically-Braced Frames, Proceedings of the 14 th World Conference on Earthquake Engineering, October 2008, Beijing, China. 4. Ricles, J.M.; Sause, R.; Roke, D.; Seo, C.-Y.; and Wolski, M. (2006). Self-Centering Steel Frame Systems, Proceedings of the 4 th International Symposium on Steel Structures, November 2006, Seoul, South Korea. 3. Sause, R.; Ricles, J.M.; Roke, D.; Seo, C.-Y.; and Lee, K.-S. (2006). Design of Self-Centering Seismic- Resistant Steel Concentrically-Braced Frames, Proceedings of the 4 th International Conference on Earthquake Engineering, October 2006, Taipei, Taiwan. 2. Sause, R.; Ricles, J.M.; Roke, D.; Seo, C.-Y.; and Lee, K.-S. (2006). Self-Centering Seismic-Resistant Steel Concentrically-Braced Frames, Proceedings of the 5 th International Conference on Behavior of Steel Structures in Seismic Areas, August 2006, Yokohama, Japan. 1. Roke, D.; Sause, R.; Ricles, J.M.; Seo, C.-Y.; and Lee, K.-S. (2006) Self-Centering Seismic-Resistant Steel Concentrically-Braced Frames, Proceedings of the 8 th U.S. National Conference on Earthquake Engineering, April 2006, San Francisco, CA, USA. Presentations Introduction to Civil Engineering, UA Women in Engineering Summer Camp, Akron, OH. - June 25, 2014; June 18, 2015; June 23, 2015; and June 13, 2016 Structural and Nonstructural Performance Evaluation of Self-Centering Concentrically Braced Frames Under Seismic Loading, 2014 ASCE Structures Congress, April , Boston, MA. Methodology for Life Cycle Cost Assessment of Self-Centering Concentrically Braced Frame Systems, 10 th International Conference on Urban Earthquake Engineering, March , Tokyo, Japan.
5 Analytical Parametric Study of Self-Centering Concentrically-Braced Frames with Friction-Based Energy Dissipation, 7 th International Conference on Behavior of Steel Structures in Seismic Areas, January , Santiago, Chile. Design Concepts for Damage-Free Seismic-Resistant Self-Centering Steel Concentrically-Braced Frames, 14 th World Conference on Earthquake Engineering, October , Beijing, China. Design of Self-Centering Seismic-Resistant Steel Concentrically-Braced Frames, 4 th International Conference on Earthquake Engineering, Self-Centering Workshop, October , Taipei, Taiwan. Affiliations Associate Member, American Society of Civil Engineers (ASCE) Member, Structural Engineering Institute (SEI) Member, American Institute of Steel Construction (AISC) Member, American Concrete Institute (ACI) Member, ASCE/SEI Seismic Effects Committee, 2014-present Fritz Engineering Research Society (FERS), 2005-present Vice President Engineer-in-Training Pennsylvania, 2003 Activities Faculty advisor, UA Student Steel Bridge Team (since Fall 2012) Faculty advisor, UA Student Concrete Canoe Team (since Fall 2013) Faculty advisor, UA Student Chapter of Structural Engineers Association of Ohio (founding in Spring 2016) Faculty advisor, ASCE/AISC National Student Steel Bridge Competition Hosting Committee at The University of Akron, Spring 2014 Faculty co-advisor, UA ASCE Student Chapter (since Fall 2012) Reviewer, ASCE Journal of Structural Engineering Reviewer, Earthquake Engineering & Structural Dynamics Reviewer, Engineering Structures Reviewer, NSF Proposal Review Panel, 2015
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