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Original Articles

Studies on the determination of shear wave velocity in sands

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Pages 41-49 | Received 28 Apr 2006, Published online: 27 Mar 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Prithvendra Singh, Venkata Siva Naga Sai Goli & Devendra Narain Singh. (2023) Current practices and the way forward in waste rubber utilization for infrastructural and geoenvironmental engineering applications. Environmental Technology Reviews 12:1.
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B. Hanumantha Rao & Taradutta Panda. (2014) A methodology for determining crushing strength of stabilized waste from shear wave velocity. International Journal of Geotechnical Engineering 8:1, pages 84-93.
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Anjan Patel & D. Singh. (2009) A generalized relationship for estimating shear wave velocity in soils. International Journal of Geotechnical Engineering 3:3, pages 343-351.
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Articles from other publishers (24)

Prithvendra Singh, Devendra Narain Singh & Solomon Debbarma. (2023) Macro- and micro- mechanisms associated with valorization of waste rubber in cement-based concrete and thermoplastic polymer composites: A critical review. Construction and Building Materials 371, pages 130807.
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Debdeep Sarkar, Meisam GoudarzyTorsten Wichtmann. (2022) Influence of particle size on the small-strain stiffness in granular soils: experimental observations and micromechanical interpretation. Géotechnique, pages 1-15.
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Sheikh Sharif Ahmed & Alejandro Martinez. (2022) Effects of Particle Shape on the Shear Wave Velocity and Shear Modulus of 3D Printed Sand Analogs. Open Geomechanics 3, pages 1-18.
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Shaohui Xiao, Kun Lin, Hongjun Liu & Annan Zhou. (2021) Performance analysis of monopile-supported wind turbines subjected to wind and operation loads. Renewable Energy 179, pages 842-858.
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Sheikh Sharif Ahmed & Alejandro Martinez. (2021) Triaxial compression behavior of 3D printed and natural sands. Granular Matter 23:4.
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Katarzyna Gabryś, Emil Soból, Wojciech Sas, Raimondas Šadzevičius & Rytis Skominas. (2021) Warsaw Glacial Quartz Sand with Different Grain-Size Characteristics and Its Shear Wave Velocity from Various Interpretation Methods of BET. Materials 14:3, pages 544.
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Mandeep Singh Basson, Jasmine Miller & Alejandro Martinez. 2021. Soil Dynamics. Soil Dynamics 311 323 .
Sheikh Sharif Ahmed & Alejandro Martinez. (2020) Modeling the mechanical behavior of coarse-grained soil using additive manufactured particle analogs. Acta Geotechnica 15:10, pages 2829-2847.
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Abolhasan Sharifi, Mohammad Sharifipour & Amir Rizvandy. (2020) Laboratory Investigation into the Effect of Particle Sizes on Shear Wave Parameters Using Bender Elements Test Results. Geotechnical Testing Journal 43:5, pages 20180240.
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T. T. DuttaM. OtsuboR. KuwanoC. O'Sullivan. (2019) Stress wave velocity in soils: Apparent grain-size effect and optimum input frequencies. Géotechnique Letters 9:4, pages 340-347.
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Devendra Narain Singh. (2019) Novel Techniques to Simulate and Monitor Contaminant–Geomaterial Interactions. Indian Geotechnical Journal 49:1, pages 2-36.
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Wei Hu, Gianvito Scaringi, Qiang Xu & Runqiu Huang. (2018) Acoustic Emissions and Microseismicity in Granular Slopes Prior to Failure and Flow‐Like Motion: The Potential for Early Warning. Geophysical Research Letters 45:19.
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Libin Liu, Guoqiang Shen, Zhentao Wang, Hongwei Yang, Hongwei Han & Yuanfeng Cheng. (2018) Abnormal formation velocities and applications to pore pressure prediction. Journal of Applied Geophysics 153, pages 1-6.
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Yifei Sun, Yang Shen & Chen Chen. (2018) A grading parameter for evaluating the grading-dependence of the shear stiffness of granular aggregates. Particuology 36, pages 193-198.
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Bo Huang, Tangdai Xia, Haomiao Qiu, Xinmin Zhou & Weiyun Chen. (2017) Shear wave velocity in sand considering the effects of frequency based on particle contact theory. Wave Motion 72, pages 173-186.
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Xiaoqiang Gu, Lutong Lu & Jiangu Qian. (2017) Discrete element modeling of the effect of particle size distribution on the small strain stiffness of granular soils. Particuology 32, pages 21-29.
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Stian Baardsgaard Hanssen, Gudmund Eiksund & Steinar Nordal. (2016) Impact vibration test of monopile foundation model in dry sand. International Journal of Physical Modelling in Geotechnics 16:2, pages 65-82.
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Mahmoud N. HussienMourad Karray. (2016) Shear wave velocity as a geotechnical parameter: an overview. Canadian Geotechnical Journal 53:2, pages 252-272.
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B. J. ChangT. C. Hutchinson. (2013) Experimental Evaluation of p-y Curves Considering Development of Liquefaction. Journal of Geotechnical and Geoenvironmental Engineering 139:4, pages 577-586.
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J. YANG & X.Q. GU. (2013) Shear stiffness of granular material at small strains: does it depend on grain size?. Géotechnique 63:2, pages 165-179.
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A. Patel, M. P. Kulkarni, S. D. Gumaste, P. P. Bartake, K. V. K. Rao & D. N. Singh. (2011) A Methodology for Determination of Resilient Modulus of Asphaltic Concrete. Advances in Civil Engineering 2011, pages 1-6.
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A. Patel, D. N. Singh & K. K. Singh. (2010) Performance Analysis of Piezo-Ceramic Elements in Soils. Geotechnical and Geological Engineering 28:5, pages 681-694.
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Jong-Sub LeeChangho LeeHyung-Koo YoonWoojin Lee. (2010) Penetration Type Field Velocity Probe for Soft Soils. Journal of Geotechnical and Geoenvironmental Engineering 136:1, pages 199-206.
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Yan-guo Zhou, Yun-min Chen, Yoshiharu Asaka & Tohru Abe. (2008) Surface-mounted bender elements for measuring horizontal shear wave velocity of soils. Journal of Zhejiang University-SCIENCE A 9:11, pages 1490-1496.
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