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  4. Buoyant Hydraulic Fractures: How they Emerge, Grow, and get Arrested
 
conference presentation

Buoyant Hydraulic Fractures: How they Emerge, Grow, and get Arrested

Möri, Andreas  
•
Peruzzo, Carlo  
•
Garagash, Dmitry
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November 16, 2023
ARMA HFC 2023 Series

Most anthropogenic applications of hydraulic fracturing treatments are performed in sedimentary basins. In these geological formations, the minimum compressive stress is usually horizontal and increases with depth. As a result, hydraulic fractures grow along vertical planes. Because the density of the fluid and solid are generally different, a buoyant force between the hydrostatic pressure gradient and the background stress emerges, allowing for possible self-sustained buoyant propagation. The limitation of such height growth of hydraulic fractures above the formation of interest is a key metric for the design of successful hydraulic fracture treatments. We present an overview of the governing factors leading to buoyant hydraulic fracture emergence, propagation, and arrest. We notably show that the entire history of such fractures can be related to only two dimensionless numbers. We use this knowledge to study the arrest of such fractures by various possible arrest mechanisms like changes in the fracturing toughness, minimum in-situ compressive stress, and others.

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Type
conference presentation
Author(s)
Möri, Andreas  
Peruzzo, Carlo  
Garagash, Dmitry
Lecampion, Brice  
Date Issued

2023-11-16

URL

Recording of the Talk

https://www.youtube.com/watch?v=m4lFZcfEYfk
Written at

EPFL

EPFL units
GEL  
Event nameEvent placeEvent date
ARMA HFC 2023 Series

Online

November 16, 2023

RelationURL/DOI

IsContinuedBy

https://infoscience.epfl.ch/record/304483
Available on Infoscience
February 22, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/205156
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