Evolution of Elastic Shear Modulus During Shearing Under Different Stress Paths Considering Anisotropic Stress History

IF 2.1 4区 工程技术 Q2 GEOCHEMISTRY & GEOPHYSICS
Kamran Fani, A. Akhtarpour, J. Bolouri Bazaz
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引用次数: 0

Abstract

: Continuous shear wave velocity measurements are conducted on cylindrical triaxial sandy specimens consolidated with isotropic and anisotropic stress histories to characterize the evolution of the elastic shear modulus under different stress paths. The shear wave velocity is measured using an automatic device capable of consecutive measurements of travel time. All specimens were prepared using the Water Sedimentation (WS) method
考虑各向异性应力历程的不同应力路径下剪切过程中弹性剪切模量的演变
:对各向同性和各向异性应力历史的圆柱形三轴砂土试样进行连续剪切波速测量,以确定不同应力路径下弹性剪切模量的演变特征。剪切波速度的测量使用的是能够连续测量行进时间的自动装置。所有试样均采用水沉积(WS)法制备
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来源期刊
Journal of Earthquake and Tsunami
Journal of Earthquake and Tsunami 地学-地球化学与地球物理
CiteScore
2.60
自引率
13.30%
发文量
38
审稿时长
>12 weeks
期刊介绍: Journal of Earthquake and Tsunami provides a common forum for scientists and engineers working in the areas of earthquakes and tsunamis to communicate and interact with one another and thereby enhance the opportunities for such cross-fertilization of ideas. The Journal publishes original papers pertaining to state-of-the-art research and development in Geological and Seismological Setting; Ground Motion, Site and Building Response; Tsunami Generation, Propagation, Damage and Mitigation, as well as Education and Risk Management following an earthquake or a tsunami. We welcome papers in the following categories: Geological and Seismological Aspects Tectonics: (Geology - earth processes) Fault processes and earthquake generation: seismology (earthquake processes) Earthquake wave propagation: geophysics Remote sensing Earthquake Engineering Geotechnical hazards and response Effects on buildings and structures Risk analysis and management Retrofitting and remediation Education and awareness Material Behaviour Soil Reinforced concrete Steel Tsunamis Tsunamigenic sources Tsunami propagation: Physical oceanography Run-up and damage: wave hydraulics.
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