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Fracture mechanics / Power law / San Francisco earthquake / Physics / Geology / Solid mechanics / Seismology / Earthquakes / Earthquake


Load-Unload Response Ratio (LURR), Accelerating Moment/Energy Release (AM/ER) and State Vector Xiang-chu Yin(1,2), Huai-zhong Yu(1), Victor Kukshenko(3), Zhaoyong Xu(1,5), Zhishen Wu(1,4), Min Li(1), Ke-yin Peng(1,2) and
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Document Date: 2003-11-13 06:54:49


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City

Kobe / San Francisco / Beijing / Kunming / Washington / Washington / D. C. / Washington D. C. / /

Company

Bowman D. D. / Finite Fault Networks / Interunis Ltd. / State Key Laboratory / AMR / /

Country

France / Japan / Russia / China / /

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Event

Natural Disaster / /

Facility

Ioffe Physical Technique Institute / State Key Laboratory of Nonlinear Mechanics / Institute of Mechanics / Ibaraki University / University of Texas Press / A.F Ioffe Physical Technical Institute / /

IndustryTerm

experimental energy release curves / modified power-law time-to-failure / nonlinear systems / time-to-failure power law / cumulative seismic energy / energy release / released seismic energy / seismic moment/energy release / seismic energy release / energy / be modeled using a modified power-law time-to-failure / /

NaturalFeature

San Francisco Bay / /

Organization

Center for Analysis and Prediction / Institute of Mechanics / Natural Sciences Foundation of China / University of Texas Press / Yunnan Province Seismological Bureau / Russian Academy of Sciences / Chinese Academy of Science / Ministry of Science and Technology / A.F Ioffe Physical Technical Institute / Physical Technique Institute / Acoustic Emission Channel Board / China Seismological Bureau / Ibaraki University / /

Person

Min Li / Victor Kukshenko / /

/

Position

D. J. / /

ProvinceOrState

South Carolina / Yunnan Province / California / Washington / /

Technology

FPGA / Geophysics / simulation / /

SocialTag