Numerical Study on the Elastic Deformation and the Stress Field of Brittle Rocks under Harmonic Dynamic Load

In order to study the deformation displacement and the stress field of brittle rocks under harmonic dynamic loading, a series of systematic numerical simulations are conducted in this paper. A 3D uniaxial compression simulation is carried out to calibrate and determine the property parameters of san...

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Published in:Energies
Main Authors: Siqi Li, Shenglei Tian, Wei Li, Xin Ling, Marcin Kapitaniak, Vahid Vaziri
Format: Article
Language:English
Published: MDPI AG 2020-02-01
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/4/851
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author Siqi Li
Shenglei Tian
Wei Li
Xin Ling
Marcin Kapitaniak
Vahid Vaziri
author_facet Siqi Li
Shenglei Tian
Wei Li
Xin Ling
Marcin Kapitaniak
Vahid Vaziri
author_sort Siqi Li
collection DOAJ
container_title Energies
description In order to study the deformation displacement and the stress field of brittle rocks under harmonic dynamic loading, a series of systematic numerical simulations are conducted in this paper. A 3D uniaxial compression simulation is carried out to calibrate and determine the property parameters of sandstone and a model of the cylindrical indenter intruding the rock is proposed to analyze the process of elastic deformation. Four main parameters are taken into account, namely the position on the rock, the frequency and the amplitude of dynamic load, the type of indenter and the loading conditions (static and static-dynamic). Based on the analysis undertaken, it can be concluded that both of the deformation displacement and stress field of the rock change in a harmonic manner under the static-dynamic loads. The frequency and the amplitude of harmonic dynamic load determine the period and the magnitude of the rock response, respectively. In addition, the existence of harmonic dynamic load can aggravate the fatigue damage of the rock and allow a reduction in static load. Our investigations confirm that the static-dynamic loads are more conducive to rock fracture than static load.
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spelling doaj-art-e6555c7708bc4d458ab94b2e672b4fde2025-08-19T21:50:50ZengMDPI AGEnergies1996-10732020-02-0113485110.3390/en13040851en13040851Numerical Study on the Elastic Deformation and the Stress Field of Brittle Rocks under Harmonic Dynamic LoadSiqi Li0Shenglei Tian1Wei Li2Xin Ling3Marcin Kapitaniak4Vahid Vaziri5Institute of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, ChinaInstitute of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, ChinaInstitute of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, ChinaInstitute of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, ChinaCentre for Applied Dynamics Research, School of Engineering, University of Aberdeen, Aberdeen AB24 3UE, UKCentre for Applied Dynamics Research, School of Engineering, University of Aberdeen, Aberdeen AB24 3UE, UKIn order to study the deformation displacement and the stress field of brittle rocks under harmonic dynamic loading, a series of systematic numerical simulations are conducted in this paper. A 3D uniaxial compression simulation is carried out to calibrate and determine the property parameters of sandstone and a model of the cylindrical indenter intruding the rock is proposed to analyze the process of elastic deformation. Four main parameters are taken into account, namely the position on the rock, the frequency and the amplitude of dynamic load, the type of indenter and the loading conditions (static and static-dynamic). Based on the analysis undertaken, it can be concluded that both of the deformation displacement and stress field of the rock change in a harmonic manner under the static-dynamic loads. The frequency and the amplitude of harmonic dynamic load determine the period and the magnitude of the rock response, respectively. In addition, the existence of harmonic dynamic load can aggravate the fatigue damage of the rock and allow a reduction in static load. Our investigations confirm that the static-dynamic loads are more conducive to rock fracture than static load.https://www.mdpi.com/1996-1073/13/4/851deformation displacementstress fieldharmonic dynamic loadfe simulationbrittle rock
spellingShingle Siqi Li
Shenglei Tian
Wei Li
Xin Ling
Marcin Kapitaniak
Vahid Vaziri
Numerical Study on the Elastic Deformation and the Stress Field of Brittle Rocks under Harmonic Dynamic Load
deformation displacement
stress field
harmonic dynamic load
fe simulation
brittle rock
title Numerical Study on the Elastic Deformation and the Stress Field of Brittle Rocks under Harmonic Dynamic Load
title_full Numerical Study on the Elastic Deformation and the Stress Field of Brittle Rocks under Harmonic Dynamic Load
title_fullStr Numerical Study on the Elastic Deformation and the Stress Field of Brittle Rocks under Harmonic Dynamic Load
title_full_unstemmed Numerical Study on the Elastic Deformation and the Stress Field of Brittle Rocks under Harmonic Dynamic Load
title_short Numerical Study on the Elastic Deformation and the Stress Field of Brittle Rocks under Harmonic Dynamic Load
title_sort numerical study on the elastic deformation and the stress field of brittle rocks under harmonic dynamic load
topic deformation displacement
stress field
harmonic dynamic load
fe simulation
brittle rock
url https://www.mdpi.com/1996-1073/13/4/851
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