Experiments of vertical fracture propagation based on the digital speckle technology

The vertical crack propagation behavior for sandstone/mudstone layered specimen made by the similar material was analyzed. The stress and strain field was obtained using Digital Speckle Correlation Method to analyze the propagation characteristics of vertical cracks. The test shows that the higher t...

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Main Authors: He LIU, Suling WANG, Minzheng JIANG, Yiming ZHANG
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2013-08-01
Series:Petroleum Exploration and Development
Online Access:http://www.sciencedirect.com/science/article/pii/S1876380413600671
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spelling doaj-a737553a187643119020c9739afb5a9f2021-03-02T10:32:51ZengKeAi Communications Co., Ltd.Petroleum Exploration and Development1876-38042013-08-01404520525Experiments of vertical fracture propagation based on the digital speckle technologyHe LIU0Suling WANG1Minzheng JIANG2Yiming ZHANG3PetroChina Research Institute of Petroleum Exploration & Development, Beijing 100083, China; Corresponding authorNortheast Petroleum University, Department of Mechanical Science and Engineering, Daqing 163318, ChinaNortheast Petroleum University, Department of Mechanical Science and Engineering, Daqing 163318, ChinaNortheast Petroleum University, Department of Mechanical Science and Engineering, Daqing 163318, ChinaThe vertical crack propagation behavior for sandstone/mudstone layered specimen made by the similar material was analyzed. The stress and strain field was obtained using Digital Speckle Correlation Method to analyze the propagation characteristics of vertical cracks. The test shows that the higher the strength of the interface layer, the more susceptible the crack to deflect from the side of the low-strength than from the side of the high-strength of the material. It is easy for the interface to unglue when the interfacial adhesion strength is weak, which results in the dislocation propagation after the crack passing the interface whether crack extending from the side of high-strength material or the side of low-strength material. The longer the expansion path is before the crack passing the interface, the more likely it deflects after passing the interface. Similarly, the shorter the initial prefabricated crack is, the more susceptible to deflect after the crack passing the interface. The main factor of the deflection is the difference in the properties of the composite materials, resulting in a larger shear strain of the interfacial layer. The shear strain can induce type II shear fracture, so it is the main factor leading to crack deflection. The bigger the shear deformation is, the more intensive the crack deflection is. Key words: vertical crack, sand/mudstone interface, crack propagation, crack deflection, Digital Speckle Correlation Methodhttp://www.sciencedirect.com/science/article/pii/S1876380413600671
collection DOAJ
language English
format Article
sources DOAJ
author He LIU
Suling WANG
Minzheng JIANG
Yiming ZHANG
spellingShingle He LIU
Suling WANG
Minzheng JIANG
Yiming ZHANG
Experiments of vertical fracture propagation based on the digital speckle technology
Petroleum Exploration and Development
author_facet He LIU
Suling WANG
Minzheng JIANG
Yiming ZHANG
author_sort He LIU
title Experiments of vertical fracture propagation based on the digital speckle technology
title_short Experiments of vertical fracture propagation based on the digital speckle technology
title_full Experiments of vertical fracture propagation based on the digital speckle technology
title_fullStr Experiments of vertical fracture propagation based on the digital speckle technology
title_full_unstemmed Experiments of vertical fracture propagation based on the digital speckle technology
title_sort experiments of vertical fracture propagation based on the digital speckle technology
publisher KeAi Communications Co., Ltd.
series Petroleum Exploration and Development
issn 1876-3804
publishDate 2013-08-01
description The vertical crack propagation behavior for sandstone/mudstone layered specimen made by the similar material was analyzed. The stress and strain field was obtained using Digital Speckle Correlation Method to analyze the propagation characteristics of vertical cracks. The test shows that the higher the strength of the interface layer, the more susceptible the crack to deflect from the side of the low-strength than from the side of the high-strength of the material. It is easy for the interface to unglue when the interfacial adhesion strength is weak, which results in the dislocation propagation after the crack passing the interface whether crack extending from the side of high-strength material or the side of low-strength material. The longer the expansion path is before the crack passing the interface, the more likely it deflects after passing the interface. Similarly, the shorter the initial prefabricated crack is, the more susceptible to deflect after the crack passing the interface. The main factor of the deflection is the difference in the properties of the composite materials, resulting in a larger shear strain of the interfacial layer. The shear strain can induce type II shear fracture, so it is the main factor leading to crack deflection. The bigger the shear deformation is, the more intensive the crack deflection is. Key words: vertical crack, sand/mudstone interface, crack propagation, crack deflection, Digital Speckle Correlation Method
url http://www.sciencedirect.com/science/article/pii/S1876380413600671
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AT minzhengjiang experimentsofverticalfracturepropagationbasedonthedigitalspeckletechnology
AT yimingzhang experimentsofverticalfracturepropagationbasedonthedigitalspeckletechnology
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