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公开(公告)号:US20230383646A1
公开(公告)日:2023-11-30
申请号:US18248102
申请日:2021-10-06
Applicant: Schlumberger Technology Corporation
Inventor: Wai Sum Wilson Yip , Courtney Payne , Sascha Trummer , Sergio Alberto Rondon Fajardo , Ryan Richard Leroux
IPC: E21B47/107 , E21B47/07
CPC classification number: E21B47/107 , E21B47/07
Abstract: A technique facilitates monitoring of events related to various well operations. According to an embodiment, the technique provides a non-invasive approach to measuring fluid and solids transport through well surface pipe assemblies. The desired information may be detected and obtained by mounting sensors to the exterior of pipes, thus enabling retrofitting of the sensor system to existing assemblies at a desired time during a given operation. Additionally, the technique may utilize a combination of sensors and systems for measuring fluid and solids transport through well flow path assemblies. The measurements obtained may be used to provide real-time monitoring of surface flow conditions as well as of downhole wellbore conditions and of the status of downhole equipment.
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2.
公开(公告)号:US12241023B2
公开(公告)日:2025-03-04
申请号:US18623159
申请日:2024-04-01
Applicant: SCHLUMBERGER TECHNOLOGY CORPORATION
Inventor: Patrice Abivin , Konstantin Viktorovich Vidma , Wai Sum Wilson Yip , John W. Still
Abstract: Methods include pumping a fracturing pad fluid into a subterranean formation under conditions of sufficient rate and pressure to create at least one fracture in the subterranean formation, the fracturing pad fluid including a carrier fluid and a plurality of bridging particles, the bridging particles forming a bridge in a fracture tip of a far field region of the formation. Methods further include forming a first plurality of fibers in situ into the subterranean formation to form a low permeability plug with the bridging particles, and pumping a proppant fluid comprising a plurality of proppant particles.
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3.
公开(公告)号:US11981865B2
公开(公告)日:2024-05-14
申请号:US17754860
申请日:2020-10-12
Applicant: SCHLUMBERGER TECHNOLOGY CORPORATION
Inventor: Patrice Abivin , Konstantin Viktorovich Vidma , Wai Sum Wilson Yip , John W. Still
CPC classification number: C09K8/805 , C09K8/887 , C09K2208/08
Abstract: Methods include pumping a fracturing pad fluid into a subterranean formation under conditions of sufficient rate and pressure to create at least one fracture in the subterranean formation, the fracturing pad fluid including a carrier fluid and a plurality of bridging particles, the bridging particles forming a bridge in a fracture tip of a far field region of the formation. Methods further include forming a first plurality of fibers in situ into the subterranean formation to form a low permeability plug with the bridging particles, and pumping a proppant fluid comprising a plurality of proppant particles.
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4.
公开(公告)号:US20240247183A1
公开(公告)日:2024-07-25
申请号:US18623159
申请日:2024-04-01
Applicant: SCHLUMBERGER TECHNOLOGY CORPORATION
Inventor: Patrice ABIVIN , Konstantin Viktorovich VIDMA , Wai Sum Wilson Yip , John W. Still
CPC classification number: C09K8/805 , C09K8/887 , C09K2208/08
Abstract: Methods include pumping a fracturing pad fluid into a subterranean formation under conditions of sufficient rate and pressure to create at least one fracture in the subterranean formation, the fracturing pad fluid including a carrier fluid and a plurality of bridging particles, the bridging particles forming a bridge in a fracture tip of a far field region of the formation.
Methods further include forming a first plurality of fibers in situ into the subterranean formation to form a low permeability plug with the bridging particles, and pumping a proppant fluid comprising a plurality of proppant particles.-
5.
公开(公告)号:US20230272268A1
公开(公告)日:2023-08-31
申请号:US17754860
申请日:2020-10-12
Applicant: SCHLUMBERGER TECHNOLOGY CORPORATION
Inventor: Patrice ABIVIN , Konstantin Viktorovich VIDMA , Wai Sum Wilson Yip , John W. Still
CPC classification number: C09K8/805 , C09K8/887 , C09K2208/08
Abstract: Methods include pumping a fracturing pad fluid into a subterranean formation under conditions of sufficient rate and pressure to create at least one fracture in the subterranean formation, the fracturing pad fluid including a carrier fluid and a plurality of bridging particles, the bridging particles forming a bridge in a fracture tip of a far field region of the formation. Methods further include forming a first plurality of fibers in situ into the subterranean formation to form a low permeability plug with the bridging particles, and pumping a proppant fluid comprising a plurality of proppant particles.
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