Testing and Modeling Two Rockfill Materials
Испытание и моделирование двух материалов каменной наброски
2003-02-25
SCID: 54.1/5kerz29h
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disturbed state conceptdrained triaxial testselastoplastic constitutive modelparticle shape effectsrockfill materials
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Abstract (AI)
Modeled rockfill materials consisting of rounded and angular particles obtained from two dam sites are subjected to drained triaxial tests using large size specimens. An elastoplastic constitutive model based on the disturbed state concept is adopted to characterize the behavior of the modeled rockfill materials. The material parameters for the two rockfill materials are determined from the experimental results. The variation of the material parameters with respect to the size of the particles for the rockfill material with the rounded particle is, in general, opposite to that for the rockfill material with the angular particles. The model is shown to provide satisfactory prediction of the behavior of the rockfill materials tested. Material parameters are predicted for prototype size of rockfill materials.
Key Findings
1
An elastoplastic constitutive model based on the disturbed state concept was used to characterize both rockfill materials.
2
Material parameters were predicted for prototype-sized rockfill materials.
3
Material-parameter trends with particle size generally differed oppositely between rounded-particle and angular-particle rockfill.
4
Rounded- and angular-particle modeled rockfill materials from two dam sites were evaluated using drained triaxial tests on large specimens.
5
The constitutive model satisfactorily predicted the tested rockfill behavior.
Research Object
Modeled rockfill materials with rounded and angular particles obtained from two dam sites
Research Subject
Drained triaxial behavior and particle-size-dependent elastoplastic material parameters, including their prediction and constitutive-model representation
Publication Details
Publication Date
2003-02-25
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