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Jian Zhao

Researcher at Monash University, Clayton campus

Publications -  328
Citations -  15640

Jian Zhao is an academic researcher from Monash University, Clayton campus. The author has contributed to research in topics: Rock mass classification & Wave propagation. The author has an hindex of 60, co-authored 316 publications receiving 11636 citations. Previous affiliations of Jian Zhao include École Polytechnique Fédérale de Lausanne & Indian Institute of Technology Delhi.

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In situ TBM penetration tests and rock mass boreability analysis in hard rock tunnels

TL;DR: In this paper, a series of TBM shield friction tests were conducted in a TBM tunneling site and the muck sieve analysis results verified that with increasing thrust force, muck size increases and the rock breakage efficiency also increases.
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UDEC modelling on wave propagation across fractured rock masses

TL;DR: In this article, the calibration work of UDEC modeling on P-wave propagation across single linearly and nonlinearly deformable fractures is conducted, and the magnitude of transmission coefficient is calculated as a function of non-dimensional fracture spacing for different numbers of fractures.
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Micromechanical modelling of the mechanical properties of a granite under dynamic uniaxial compressive loads

TL;DR: In this article, a micromechanics-based model is used to study the mechanical properties of a granite under dynamic uniaxial compressive loads, based on interacting sliding cracks uniformly distributed in the rock material.
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Two-Dimensional DDA Contact Constitutive Model for Simulating Rock Fragmentation

TL;DR: In this article, a new two-dimensional contact constitutive model for the discontinuous deformation analysis (DDA) method was presented to simulate the fragmentation of jointed rock.
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Viscous boundary of DDA for modeling stress wave propagation in jointed rock

TL;DR: The Web of Science Record was created on 2007-09-24, modified on 2016-10-14 by as discussed by the authors, with the purpose of generating a record for the first time.