Application of ultrasonic irradiation for well deliverability improvement ingas-condensate reservoirs (Record no. 169691)

MARC details
000 -LEADER
fixed length control field 02294nab a2200193 4500
008 - CÓDIGOS DE INFORMACIÓN DE LONGITUD FIJA - INFORMACIÓN GENERAL
Campo de control de longitud fija 260224s2009 xxu
245 00 - TITULO
Título Application of ultrasonic irradiation for well deliverability improvement ingas-condensate reservoirs
260 ## - PUBLICACION, DISTRIBUCION, ETC
Lugar de publicación, distribución, etc.
Nombre de publicador, distribuidor, etc.
Fecha de publicación, distribución, etc. feb. 2009
270 ## - FECHA DE CARGA
Fecha de carga 07/05/2009 ; 07/05/2009
300 ## - DESCRIPCION FISICA
Otra extensión 6 p. ; 88-94
520 ## - RESUMEN, ETC
Resumen Transcripción del resúmen publicado por el autor: In gas condensate reservoirs the process of condensation around the wellbore, when the pressure falls below the dewpoint, creates a condensate bank that can drastically reduce well productivity, requiring additional expensive wells to maintain the production level. Conventional remedial methods relying on removing the condensate bank are not generally long lasting, requiring repeated treatment. In this paper we present results of a study on the feasibility of using ultrasonic energy to alleviate the above problem by reducing the flow resistance in this region. Ultrasonic excitation of gas condensate systems was visually examined using high-pressure glass capillary tubes and micromodels with realistic pore patterns, simulating pores of a reservoir rock. Capillary tube experiments demonstrated that ultrasound radiation caused the gas-condensate interface to oscillate. In addition to destabilising the static equilibrium position of the interface, this oscillation also causes local mixing effects at the interface, lowering the effective liquid/gas interfacial tension. Results of our flow experiments in high-pressure glass micromodels showed that a significant amount of condensate was mobilised and recovered as a result of the application of ultrasound energy. We also show theoretically, that the radiation pressure caused by ultrasound waves exerts a net force on a fluid/fluid interface placed along the line of propagation of the wave. This force is a function of the phase difference between the applied acoustic field and the oscillation of the interface with the force being maximum at the resonance frequency.
581 ## - ESTADO DE COLECCIÓN
Estado de colección 1-4
773 0# - CORRECCIÓN
Título Journal of Petroleum Science & Engineering
Partes relacionadas 64
942 ## - DESC. DE MATERIAL
Tipo de item KOHA Artículo de Revista
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Sohrabi, Mehran
9 (RLIN) 41086
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Jamiolahmady, Mahmoud
9 (RLIN) 41087
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 05/03/2026 200044499   200044499 05/03/2026 Artículo de Revista


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