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Shirley J. Dyke Scott Johnson, Juan Caicedo, Tyler Ranf, Manuel Soto-Fournier

Advancing Earthquake Engineering Education through a Cooperative Effort Using Instructional Shake Tables. Shirley J. Dyke Scott Johnson, Juan Caicedo, Tyler Ranf, Manuel Soto-Fournier Washington University in St. Louis ICANCEER 2002 Harbin, China. Acknowledgments.

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Shirley J. Dyke Scott Johnson, Juan Caicedo, Tyler Ranf, Manuel Soto-Fournier

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  1. Advancing Earthquake Engineering Education through a Cooperative Effort Using Instructional Shake Tables Shirley J. DykeScott Johnson, Juan Caicedo, Tyler Ranf, Manuel Soto-Fournier Washington University in St. Louis ICANCEER 2002 Harbin, China

  2. Acknowledgments • Support for UCIST from NSF Grant (DUE 9950340) • Mid-America Earthquake Center (Project ED-9) plus travel support for ICANCEER 2002 • Washington University in St. Louis • Quanser Consulting

  3. Outline • Background • Objectives of UCIST • Equipment Selection • Outcomes to Date • Example Outreach Activities • Research Implementation • Closing

  4. Background • History • Proposed at 1998 Trilateral Earthquake Center Education meeting in St. Louis • MAE Project ED-9: Instruc. Shake Tables • NSF – DUE/CCLI Funding Obtained (DUE Grant No. 9950340 – Aug 1999) • Consortium became operational in summer 2000

  5. Oregon State Univ. Penn State Univ. or Nevada - Reno Notre Dame Washington Univ. UC Davis Univ. of Utah UIUC Virginia Tech Stanford San Jose State Univ. CalPoly Southern Illinois Univ. - Edwardsville Univ. of Nevada – Las Vegas UCLA UC-Irvine UC San Diego Florida A& M Currently over 50 Universities are members ! Background University of Alaska – Fairbanks University of Hawaii

  6. Objectives of UCIST • To provide engineering students • an understanding of structural dynamics • experience with modern laboratory equipment and instrumentation • exposure to innovative structural control techniques • To provide non-engineering students • Awareness of potential consequences of earthquakes

  7. Objectives of UCIST • Approach • Purchase instructional shake tables • Develop wide variety of experiments • Share experiments through web page • Integrate experiments throughout undergraduate and graduate curricula • Enhance outreach activities • Encourage undergraduate research

  8. Equipment Selection Shake Table Power Supply Building • Shake Table • 2 Story building • 3 accelerometers • Power Unit & Computer • Data acquisition • Pendant controller • AMD (Optional) Function Generator Safety Feature

  9. Equipment Selection

  10. Equipment Selection

  11. Outcomes to Date • Experiments (Examples) • Introduction to Dynamics of Structures • K-12 Outreach Activities in Earthquake Engineering (Notre Dame) • Earthquake-Resistant Bridge Competition for Introductory Engineering Students

  12. Outcomes to Date

  13. Outcomes to Date • Experiments (Examples) • Introduction to Dynamics of Structures • K-12 Outreach Activities in Earthquake Engineering (Notre Dame) • Earthquake-Resistant Bridge Competition for Introductory Engineering Students

  14. Outcomes to Date • Other Representative Experiments • Demonstration of Non-Structural Seismic Hazards in the Home • Dynamic Behavior of Simple Soil-Structure Systems • Liquefaction Demonstration for the UCIST Shake Table • Small Shake Table Experiments and Comparison to Analytical Predictions

  15. Outcomes to Date Interactive Tutorial on Pendant Operation (by Keenan Bull, REU 2000)

  16. Outcomes to Date Virtual Structural Dynamics Lab(by Manuel Soto-Fournier, REU 2001)

  17. Outreach Activities • Earthquake Awareness Weekend (Wash U)

  18. Outreach Activities • K-12 Outreach (Notre Dame)

  19. Research Implementations • Wave Model Verification Studies (Washington Univ.)

  20. Research Implementations • Wave Model Verification Studies (Washington Univ.) • Wireless Sensor Development (Stanford Univ.)

  21. WebLab™ Animated Model Real-time Video Output Input Selection Research Implementations • Wave Model Verification Studies (Washington Univ.) • Wireless Sensor Development (Stanford Univ.) • Telepresence Laboratory (Notre Dame)

  22. Closing • Evaluation of the project’s impact is planned through… • Online surveys for faculty and students • Number of students exposed to project • Web page statistics

  23. 12000 Mar. Feb. 10000 May Oct. Jul. Jun. Apr. Jan. Mar. 8000 Nov. Jun. Feb. Sept. Aug. Jan. May Dec. Apr. 6000 Nov. Oct. Dec. 4000 Jul. May Aug. Jun. Sept. Apr. Mar. 2000 Feb. 0 2000 2001 2002 Closing

  24. For more information see: http://ucist.cive.wustl.edu/ ucist@cive.wustl.edu

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