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[논문]Propagation of Cryogenic Thermal Fractures from Unconfined PMMA Boreholes

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학술지명(Journal)

Energies

학술지볼륨권호(Volume)

14(17)

SCI구분

SCIE

논문제목(Title)

[논문]Propagation of Cryogenic Thermal Fractures from Unconfined PMMA Boreholes

주저자명(FirstAuthor)

Minsu Cha, Lei Wang

공동저자명(Co-Author)

Naif B. Alqahtani

공동저자명(Co-Author)

Xiaolong Yin

공동저자명(Co-Author)

Bowen Yao

공동저자명(Co-Author)

Timothy J. Kneafsey

공동저자명(Co-Author)

Jennifer L. Miskimins

공동저자명(Co-Author)

Yu-Shu Wu

초록(Abstract)

In cryogenic fracturing, a rock surface exposed to cryogenic fluids undergoes a large thermal gradient, and the resultant local tensile stress overcomes rock strength and initiates fractures. This study investigates the development of cracks generated from the cryogenic treatment of a borehole under no external confining stress on specimens. The experiments were performed on transparent PMMA specimens to observe fracture proliferation around boreholes. Liquid nitrogen was flowed through the boreholes to cool the borehole surface. The results show that initial fracture growth is characterized by abrupt starts and stops, and as the fracture propagates outward, the growth appears more continuous. In an early stage, horizontal/radial fractures and vertical fractures are the defining patterns. Horizontal fractures tend to be separated by a specific exclusion distance (i.e., spacing between cracks). While distinct horizontal/vertical fractures and exclusion distance manifest themselves at an early stage, fractures resulting from fracture interactions and curvatures can develop into complex shapes at later stages. Cryogenic thermal loading induces distinctively curved fractures. The tendency of curvature may prevent greater penetration. An increase in the borehole pressure during liquid nitrogen flow, however, can lessen fracture tortuosity and facilitate radial propagation. A high flow pressure and rate are also advantageous in that they accelerate cooling and fracture propagation.

학술지출판일자(PublicationDate)

2021-09-01

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2022-03-17

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2022-03-17
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  • Version 1 2022-03-17
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관리자 ( 2022-03-17 ) [논문]Propagation of Cryogenic Thermal Fractures from Unconfined PMMA Boreholes

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