Application Rationale of Well Flow Test Complex Modules Covering Well Shut-in at the Bottomhole in terms of Eastern Siberia Carbonate Reservoirs Study
Автор:
Timur, Arbatsky
Alexander, Shchurenko
Nikita, Dadakin
Marat, Nukhayev
Ilnur, Yamalov
Konstantin, Rymarenko
Коллективный автор:
Институт нефти и газа
Кафедра разработки и эксплуатации нефтяных и газовых месторождений
Дата:
2019-10Журнал:
SPE Russian Petroleum Technology Conference held in Moscow, Russia, 22 – 24 October 2019.Квартиль журнала в Scopus:
без квартиляБиблиографическое описание:
Timur, Arbatsky. Application Rationale of Well Flow Test Complex Modules Covering Well Shut-in at the Bottomhole in terms of Eastern Siberia Carbonate Reservoirs Study [Текст] / Arbatsky Timur, Shchurenko Alexander, Dadakin Nikita, Nukhayev Marat, Yamalov Ilnur, Rymarenko Konstantin // SPE Russian Petroleum Technology Conference held in Moscow, Russia, 22 – 24 October 2019.: Society of Petroleum Engineers. — 2019.Аннотация:
The paper presents the experience of oil and gas exploration in the fields of the Irkutsk region. The
geological features of the studied facilities dictate a practical approach and the use of compact and efficient
technological solutions that can later be successfully applied to a large number of fields with similar geology.
The paper highlighted an optimized complex of works on the development and testing of wells target objects
in a cased wellbore, using the technology of “the well shut-off at the bottomhole”.
This arrangement ensures the effective implementation of work on the development of target objects and
allows for high-quality registration of the bottomhole pressure dynamics. This engineering solution allows
to perform a full cycle of hydrodynamical studies of well (well test) for a target interval in a relatively short
time. The use of a tube bank significantly reduces the wellbore storage eand allows to obtain detailed data
reliably characterizing reservoir properties and the structure of the reservoir under study.
The article describes the technology of hydrodynamic studies, with the well shut-off at the bottomhole.
The article deals with the research problems of highly productive, flowing facilities, with a concrete
example and a detailed analysis of technological features, interpretation options, possible complications
and measures for optimization. The possibility of replicating technology in various geological and technical
conditions is considered.
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