Fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planes

The bedding plane effect will occur when hydraulic fractures propagate to the bedding plane in sedimentary strata, resulting in the “≠,” “工,” or “/” shaped fracture morphology. Based on previous physical experiments results, this article analyzed the mecroscopic propagation mechanism of tensile fail...

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Main Authors: Bingxiang Huang, Jiangwei Liu
Format: Article
Language:English
Published: SAGE Publishing 2018-09-01
Series:Energy Exploration & Exploitation
Online Access:https://doi.org/10.1177/0144598717754101
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spelling doaj-8cb80c09218e4f47bbda4a801c3164012020-11-25T04:07:29ZengSAGE PublishingEnergy Exploration & Exploitation0144-59872048-40542018-09-013610.1177/0144598717754101Fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planesBingxiang HuangJiangwei LiuThe bedding plane effect will occur when hydraulic fractures propagate to the bedding plane in sedimentary strata, resulting in the “≠,” “工,” or “/” shaped fracture morphology. Based on previous physical experiments results, this article analyzed the mecroscopic propagation mechanism of tensile failure and the mechanical conditions for main hydraulic fracture and the bedding plane fracture propagating, proposing the criteria for hydraulic fracture to penetrate through the bedding plane. A fully three-dimensional model of hydraulic fracture morphology in horizontal borehole hydraulic fracturing is established with the vertical water flow, water leak-off, and bedding plane effect taken into consideration. Basic equations of continuity, pressure decline, hydraulic fracture morphology, and others are solved. After that, true triaxial hydraulic fracturing experiments with samples containing bedding planes are conducted to verify the aperture, length, width, and height of hydraulic fractures in this model. The model is proved to be accurate and reliable.https://doi.org/10.1177/0144598717754101
collection DOAJ
language English
format Article
sources DOAJ
author Bingxiang Huang
Jiangwei Liu
spellingShingle Bingxiang Huang
Jiangwei Liu
Fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planes
Energy Exploration & Exploitation
author_facet Bingxiang Huang
Jiangwei Liu
author_sort Bingxiang Huang
title Fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planes
title_short Fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planes
title_full Fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planes
title_fullStr Fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planes
title_full_unstemmed Fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planes
title_sort fully three-dimensional propagation model of horizontal borehole hydraulic fractures in strata under the effect of bedding planes
publisher SAGE Publishing
series Energy Exploration & Exploitation
issn 0144-5987
2048-4054
publishDate 2018-09-01
description The bedding plane effect will occur when hydraulic fractures propagate to the bedding plane in sedimentary strata, resulting in the “≠,” “工,” or “/” shaped fracture morphology. Based on previous physical experiments results, this article analyzed the mecroscopic propagation mechanism of tensile failure and the mechanical conditions for main hydraulic fracture and the bedding plane fracture propagating, proposing the criteria for hydraulic fracture to penetrate through the bedding plane. A fully three-dimensional model of hydraulic fracture morphology in horizontal borehole hydraulic fracturing is established with the vertical water flow, water leak-off, and bedding plane effect taken into consideration. Basic equations of continuity, pressure decline, hydraulic fracture morphology, and others are solved. After that, true triaxial hydraulic fracturing experiments with samples containing bedding planes are conducted to verify the aperture, length, width, and height of hydraulic fractures in this model. The model is proved to be accurate and reliable.
url https://doi.org/10.1177/0144598717754101
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AT jiangweiliu fullythreedimensionalpropagationmodelofhorizontalboreholehydraulicfracturesinstrataundertheeffectofbeddingplanes
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