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【正文】 ced and prestressed concrete structures and bridges – ,mechanical behavior and durability of concrete materials and posites, – earthquake engineering and seismic design, interface fracture mechanics, – fiberreinforced polymer (FRP) posites in structural rehabilitation, – structural assessment and nondestructive testing (NDT), – thermomechanical analysis and design of refractory linings, a – design evaluation and structural safety assessment of nuclear power containments. Oral Buyukozturk MIT 麻省理工學(xué)院 Publications BlastResistant Glazing Systems Farfield NDT technique for detecting GFRP debonding from concrete Peel and Shear Fracture Characterization of Debonding in FRP Plated Concrete Affected by Moisture Oral Buyukozturk 。 National Academy of Engineering。 加州大學(xué)伯克利分校 ,University of California Berkeley Graduate Programs Engineering and Project Management Environmental Engineering GeoEngineering Structural Engineering, Mechanics and Materials Transportation Engineering Civil Systems University of California Berkeley Areas of Emphasis Theory of structures, finite element methods, linear and nonlinear puter methods of analysis, puter aided engineering Structural dynamics and random vibrations Earthquake engineering design and analysis Design and behavior of reinforced and prestressed concrete, steel, posite, timber and other structures University of California Berkeley Areas of Emphasis Experimental analysis, including nondestructive evaluation of structures Mechanics of solids, structural mechanics, putational mechanics, thermomechanics of deformable bodies, micromechanics and mechanics of posite materials Structural reliability, risk analysis, decision theory Fire protection engineering Structural materials, behavior of concrete and cementitious materials and plastics Advanced concrete technology. Earthquake Engineering Research Center (PEER) University of California Berkeley Assessment of ground Motion Selection and Modification Procedures – Conduct analyses of multistory building models subjected to a large number of earthquake ground motions to determine the native statistics of the responses, pare results with results obtained using various proposed ground motion selection and modification procedures, and remend appropriate ground motion selection and scaling procedures. Earthquake Engineering Research Center (PEER) University of California Berkeley Synthetically Generated Ground Motions – Using validated broadband ground motion simulation procedures, generate ground motion time histories in San Francisco and Los Angeles for large earthquakes on the major faults in the region. The time histories will be simulated for geographic areas of specific interest for San Francisco and Los Angeles. These broadband simulated time histories are to contain long period effects such as rupture directivity effects and basin effects that are specific to the fault geometry and geological structure of the regions. Earthquake Engineering Research Center (PEER) University of California Berkeley Mitigation of Seismi
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