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卫健学术沙龙:人口层面的生命伦理学——对公众健康三十五年的贡献
Electrocatalysis for Energy Conversion and Storage
Pushing the boundary?of chemical syntheses of glycans and glycoconjugates
“清美”沙龙 :记忆冲撞
报告题目:
Understanding Earthquakes in the Laboratory
 报告人:
夏开文
Department of Civil Engineering and Lassonde Institute
University of Toronto, Toronto, Ontario, Canada M5S 1A4
报告时间:
2008-07-11 10:00
报告地点:
清华大学 逸夫技术科学楼 1209会议室
主办单位:
航天航空学院
  简介:

AbstractShallow tectonic earthquakes represent one of the most destructive geological hazards in nature. Laboratory experiments are an indispensable complement to conventional approaches to understanding earthquakes. However, the catastrophic nature of earthquakes poses a great challenge to design and conduct such experiments. Focusing on earthquake rupture dynamics, we apply cutting-edge tools used in dynamic fracture experiments to laboratory earthquakes. A laboratory fault model is designed based on the widely accepted tectonic earthquake mechanism – spontaneous frictional shear fracture. In our laboratory model, the fault is a frictional contact between two photoelastic plates under quasi-static compression and shear loading. We then disturb this fault system with a controlled isotropic pressure pulse to trigger unstable propagation of frictional sliding (i.e., earthquake rupture). The two dimensional stress field associated with the rupture propagation, visualized with photoelasticity, is captured with a frame camera featuring ultra high spatial and temporal resolutions. Earthquakes along faults separating identical materials and different materials are investigated. The observations of supershear rupture and rupture directionality, as well as their implications to natural earthquakes will be discussed. Some other factors need to be considered to understand earthquakes, including fault geometries and structures, and the constitutive and frictional response of geomaterials. Some preliminary results on these topics will also be addressed.

 

 

Brief CV

Kaiwen Xia(夏开文)博士,男,汉族,出生年月:19730801。研究方向:动态断裂,动态破坏

Research Interests

Dynamic fractures, Impact mechanics, Earthquakes, Sensor technology, Safety engineering

Education

Ph.D., Mechanical Engineering and Geophysics (minor), California Institute of Technology                2005

Advisors: Professor Ares J. Rosakis and Professor Hiroo Kanamori

Dissertation: Experimental investigations of earthquake dynamics

M.S. Geophysics, California Institute of Technology                                                                  2000

M.S. Mechanical Engineering, University of Science and Technology of China                                 1998

Advisor: Professor Zhiping Tang

Dissertation: Mechanical properties of multi-component granular materials

B.S. Mechanical Engineering (with honors), University of Science and Technology of China                   1995

Work Experience

Assistant Professor, University of Toronto                                                                     2006-

·         Studied the crack micro-crack interaction in rocks.

·         Investigated the effect of microstructure on the dynamic behavior of rocks.

·         Built several split Hopkinson pressure bar facilities.

Postdoctoral Research Associate, Brown University                                                    2005-2006

·         Investigated the adhesion in sub-micro scale with applications to bioengineering.

·         Prepared samples for nano-adhesion and nano-friction with micro-fabrication methods.

Research Assistant, California Institute of Technology                                                      1998-2005

·         Systematically studied spontaneous mode I and mixed mode fractures.

·         Found the dependence of dynamic fracture energy on fracture length.

·         Discovered supershear earthquake ruptures and subRayleigh to supershear rupture transition.

·         Demonstrated speeds and modes of earthquake ruptures in bimaterial faults.

Research Assistant, University of Science and Technology of China                               1995-1998

·         Tested dynamic materials response with Hopkinson bar under elevated temperatures.

·         Experimentally and numerically investigated the mechanical response of granular materials.

Awards and Honors

Harting  Award                                                                                               2007

Society for Experimental Mechanics

William F. Ballhaus Prize for outstanding doctoral dissertation in Aeronautics                 2005

California Institute of Technology

Third place award at the International Student Paper Competition                                      2003

Society for Experimental Mechanics annual conference, Charlotte, North Carolina

Professional Affiliations

Canadian Society of Mechanical Engineers

American Geophysical Union

Society for Experimental Mechanics

American Society of Civil Engineers

American Society of Mechanical Engineers

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