Correlating failure strength with wave velocities for cemented sands from the particle-level analysis

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초록

Measurement of elastic wave velocities allows engineers to effectively characterize and monitor the stiffness and strength development of the cemented soils. Several correlations between elastic wave velocity and strength, as well as correlations between small-strain modulus and strength, have been proposed for different materials. However, since the physical justification of the stiffness-strength correlation is not fully understood, criticisms and diverse views still exist. This study derived the analytical correlation between the elastic wave velocity (or small-strain stiffness) and the unconfined compressive strength of cemented soil, based on a simple cubic packing of coated equal-sized spheres. The analytical derivation suggested a one-parameter power function between the strength and the wave velocity or stiffness, with the power index of 4 and 2 for wave velocity and stiffness, respectively. To verify the derived correlation model, a first-hand laboratory database was used. Factors affecting the correlations are also discussed.

키워드

Cement-stabilizationClayey sandUnconfined compressive strengthElastic wave velocityStiffnessParticle-level analysisSMALL-STRAIN STIFFNESSSHEAR-STRENGTHSOILSPARAMETERSBEHAVIOR
제목
Correlating failure strength with wave velocities for cemented sands from the particle-level analysis
저자
Wei, XiaoLiu, HuanziChoo, HyunwookKu, Taeseo
DOI
10.1016/j.soildyn.2021.107062
발행일
2022-01
유형
Article
저널명
Soil Dynamics and Earthquake Engineering
152
페이지
1 ~ 11