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<< Скважинная добыча нефти (Техника и технология добычи нефти) <<

Бурцев И.Б. Гидромеханика процесса добычи нефти погружными центробежными и штанговыми насосами

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Автор: Бурцев И.Б.
Название: Гидромеханика процесса добычи нефти погружными центробежными и штанговыми насосами
Год издания: 1996
УДК: 622.276.56
Число страниц: 240
Содержание книги:
From the autors
OPERATION
1.1 .Fundamental tenets of the communicating vessel hydrostatics
OPENED TUBING-CASING ANNULUS
2.1.The connection between flow-rate and other values when operating a hydraulic system with degassed fluid
2.2.Hydraulic system operation with oil-water degassed fluid mixture
2.3.Hydraulic system operation with oil/water/gas gas-fluid mixture
2.4.Optimal pressure value definition at a pump suction point as well as the necessary submergence beneath the dynamic level and a suspension
2.5.Hydraulic system operation with a gas-fluid mixture in the presence of gas excessive pressure in the tubing-casing space
3.BASIC HYDRODYNAMIC PARAMETER SIGNIFICANCE — NAMELY: FORMATION PRESSURE AND PRODUCTIVITY FACTORWHEN SOLVING THE PROBLEMS OF WELL OIL PRODUCTION
3.1.Definition of the formation pressure value by the depth (pressure) gauges
3.2.Formation pressure definition by means of statical level measurements
3.3.Formation pressure definition in a project well on the base of an isobar map
3.4.Productivity factor and its definition methods
POTENTIALITIES
OIL WELLS
POTENTIALITY DEFINITION
6.1 .Definition of well flow-rate as well as fluid and oil production increase at the bottom-hole pressure decreasing
7. METHOD OF PRODUCTIVE POTENTIALITY INCREASE AS NELL AS EFFICIENC Y DEFINITION OF THE FORMATION AND THE BOTTOM-HOLE ZONE TREATMENT METHOD
7.1.Well productive potentiality increase owing to formation pressure raising as well as method efficiency definition under invariable water content in produced fluid
7.2. Well productive potentiality increase owing to the bottom-hole zone treatment as well as efficiency method definition at invariable water content in the produced fluid
7.3.Definition of flow-rates and oil production increase depending on the bottom-hole pressure,a productivity factor and water content
7.3.2.Definition of oil production increase at two bottom-hole pressure values under the given productivity factor and water content decrease
7.3.3.Definition of well productive potentialities as well as operation efficiency after bottom-hole zone treatment after water content decrease
SUBMERSIBLE CENTRIFUGAL PUMP
8.1.Pressure distribution in formation-well-tubing-gathering collector system at the initial moment as well as while operating
8.2.Joint operation of formation^ well and an electrical centrifugal pump with water in the absence of back pressure in a gathering collector
8.3.Joint operation of formation,a well and an electrical centrifugal 'pump with water before and after the bottom-hole zone treatment at «flow-rate — head» pump invariable characteristic
CONTENT absence of «flow-rate — head» pump invariable characteristic
8.5.Joint operation of formation and a well at two productivity factor values in the absence of the excess back pressure in a gathering collector before and after substitution one pump for another which has different head characteristics
8.6.Formation pressure value effect on joint operation of a well and an electrical centrifugal pump 9. BACKPRESSURE EFFECTS IN A GATHERING COLLECTOR AS WELL AS AT A WELL BUFFER ON AN ELECTRICAL CENTRIFUGAL PUMP OPERATION
AS OTHER VALUES
AT TWO BEDDING DEPTH VALUES
Глоссарий:
а б в г д е ж з и к л м н о п р с т у ф х ц ч ш э
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Гидромеханика совместной работы пласта, добывающих и нагнетательных скважин
Добыча, хранение и транспортировка нефти и газа >> Разработка и эксплуатация нефтяных месторождений >> Подземная гидромеханика
Технология и техника добычи нефти
Добыча, хранение и транспортировка нефти и газа >> Разработка и эксплуатация нефтяных месторождений >> Скважинная добыча нефти (Техника и технология добычи нефти)

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Главный редактор проекта: Мавлютов Р.Р.
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