Impact of water dynamics in fractures on the performance of hydraulically fractured wells in gas-shale reservoirs (Record no. 187462)

MARC details
000 -LEADER
fixed length control field 02279nab a2200193 4500
008 - CÓDIGOS DE INFORMACIÓN DE LONGITUD FIJA - INFORMACIÓN GENERAL
Campo de control de longitud fija 260224s2012 xxu ing
041 ## - IDIOMA
Idioma Inglés
245 00 - TITULO
Título Impact of water dynamics in fractures on the performance of hydraulically fractured wells in gas-shale reservoirs
260 ## - PUBLICACION, DISTRIBUCION, ETC
Lugar de publicación, distribución, etc.
Nombre de publicador, distribuidor, etc.
Fecha de publicación, distribución, etc. mar. 2012
270 ## - FECHA DE CARGA
Fecha de carga 03/12/2012 ; 03/12/2012
300 ## - DESCRIPCION FISICA
Otra extensión 8 p. ; 143-151
520 ## - RESUMEN, ETC
Resumen Transcripción del resumen del autor Slickwater fracturing has been increasingly applied to stimulate unconventional shale-gas reservoirs. Comparing with crosslinked fluids, slickwater used as a fracturing fluid has several advantages, including low cost, a higher possibility of creating complex fracture networks, less formation damage, and ease of cleanup. An enormous amount of water is injected into the formation during the treatment. Even with a good recovery of injected water from flowback, large quantities of water are still left within the reservoir. The dynamics of the water phase within the created hydraulic fractures and reactivated natural fractures (induced fractures) has significant impact on both short- and long-term performance of a hydraulically fractured well. The dynamics of the water phase within fractures is controlled by many mechanisms, such as relative permeability, capillary pressure, gravity segregation, and stress-sensitive fracture conductivities. In this paper, reservoir-simulation models for a generic gas-shale reservoir are constructed to investigate the changes of water-saturation distribution in fractures over time during production and their impact on gas-production performance. It is demonstrated that water imbibitions caused by capillary pressure and gravity segregation can play important roles in water-saturation distribution and redistribution, particularly during extended shut-in, which in turn affects gas flow significantly. Moreover, an unfavorable combination of relative permeability, capillary pressure, stress-sensitive fracture conductivities, and invasion-zone permeability damage can lead to water-blockage problems.
581 ## - ESTADO DE COLECCIÓN
Estado de colección 2
773 0# - CORRECCIÓN
Título Journal of Canadian Petroleum Technology
Partes relacionadas 51
942 ## - DESC. DE MATERIAL
Tipo de item KOHA Artículo de Revista
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Cheng, Y.
9 (RLIN) 52783
Holdings
Biblioteca propietaria Biblioteca actual Fecha de adquisición Inventario Total de préstamos Inventario Fecha de carga Tipo de item KOHA
Biblioteca Alejandro Angel Bulgheroni Biblioteca Alejandro Angel Bulgheroni 06/03/2026 200059578   200059578 06/03/2026 Artículo de Revista


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