Javascript must be enabled to continue!
A Cable-Controlled Separate-Layer Production Technology
View through CrossRef
Abstract
In high water cut oilfield, the separate-layer producers often face the problems of low separate-layer control level, difficult water locating and plugging, high operation cost and low testing and adjusting efficiency. As to solve these problems, new separate-layer production technology is required. The paper proposes a cable-controlled separate-layer production technology. The cable-controlled separate-layer production system consists of adjustable production regulator, testing and adjusting instrument, ground controller, and some matching tools. In the operation process, the testing and adjusting instrument is run into the wellbore through cable. The locator of the instrument can fix the accurate position where the target regulator is. After the delivery of the instrument, the testing and adjusting instrument connects with the adjustable production regulator. The liquid flow rate of the regulator can be adjusted continuously according to the instructions and the flow rate can be read simultaneously on the ground. The pressure and water cut of the single layer can also be monitored. Once the testing and adjusting of the target regulator are accomplished, the instrument disconnects with the regulator and move on to the next layer under the command from the ground. Field tests showed that the technology realized production adjusting and parameter testing of each layer in the producers. This technology requires the producers to possess well-preserved casing tube and annular testing condition. The technology is applicable to the rod pumped wells with big water cut variation, and the important wells whose reservoir need to be specially monitored. Because the testing and adjusting instrument is run into wellbore through annulus, the operation can be implemented while the pump unit is working, without interfering normal production. The cable-controlled separate-layer production technology effectively relieves the planar, inter layer and interior layer production contradictions. The balanced production of all kinds of reservoirs is realized and the producing capacity of medium-low permeability reservoirs is released, improving production rate and oil recovery.
Title: A Cable-Controlled Separate-Layer Production Technology
Description:
Abstract
In high water cut oilfield, the separate-layer producers often face the problems of low separate-layer control level, difficult water locating and plugging, high operation cost and low testing and adjusting efficiency.
As to solve these problems, new separate-layer production technology is required.
The paper proposes a cable-controlled separate-layer production technology.
The cable-controlled separate-layer production system consists of adjustable production regulator, testing and adjusting instrument, ground controller, and some matching tools.
In the operation process, the testing and adjusting instrument is run into the wellbore through cable.
The locator of the instrument can fix the accurate position where the target regulator is.
After the delivery of the instrument, the testing and adjusting instrument connects with the adjustable production regulator.
The liquid flow rate of the regulator can be adjusted continuously according to the instructions and the flow rate can be read simultaneously on the ground.
The pressure and water cut of the single layer can also be monitored.
Once the testing and adjusting of the target regulator are accomplished, the instrument disconnects with the regulator and move on to the next layer under the command from the ground.
Field tests showed that the technology realized production adjusting and parameter testing of each layer in the producers.
This technology requires the producers to possess well-preserved casing tube and annular testing condition.
The technology is applicable to the rod pumped wells with big water cut variation, and the important wells whose reservoir need to be specially monitored.
Because the testing and adjusting instrument is run into wellbore through annulus, the operation can be implemented while the pump unit is working, without interfering normal production.
The cable-controlled separate-layer production technology effectively relieves the planar, inter layer and interior layer production contradictions.
The balanced production of all kinds of reservoirs is realized and the producing capacity of medium-low permeability reservoirs is released, improving production rate and oil recovery.
Related Results
At Sea Test: Hawaii Deepwater Cable Program
At Sea Test: Hawaii Deepwater Cable Program
ABSTRACT
In order to investigate and demonstrate the technical feasibility of laying a Submarine power cable in the open ocean, in depths exceeding 6000 feet, ove...
Deep Learning Training Model Construction and Optimization of Cable Size Features in 3D Point Cloud Data
Deep Learning Training Model Construction and Optimization of Cable Size Features in 3D Point Cloud Data
Cables are widely used in power transmission, and the measurement of key dimensions of cables is an indispensable part of the cable preparation process to help ensure their quality...
Natural vibration and wind-induced response analysis of the non-fully symmetric Geiger cable dome
Natural vibration and wind-induced response analysis of the non-fully symmetric Geiger cable dome
Cable dome is a special flexible structure made of cable strut beam and membrane. Non-fully symmetric Geiger cable dome is a new Geiger cable dome with the characteristics of eight...
Effect of Pipeline Thermal Expansion on Direct Electric Heating Cable
Effect of Pipeline Thermal Expansion on Direct Electric Heating Cable
Subsea Direct Electrical Heating (DEH) of pipelines has been in operation for more than 10 years and is therefore considered by most Operators as proven technology. Aside from the ...
Wireline Cable Dynamics and Wellbore Diagnostics in the Deepwater Logging Environment
Wireline Cable Dynamics and Wellbore Diagnostics in the Deepwater Logging Environment
The evolving complexity of deepwater wellbores has created new challenges and risks for wireline evaluation. Geometries and depths challenge the foundational assumptions of traditi...
A Cable-Controlled Pressure Testing Technology for Separate-Layer Production
A Cable-Controlled Pressure Testing Technology for Separate-Layer Production
Abstract
The separate-layer production system is usually used to solve the problems of low separate-layer control level, difficult water locating and plugging, high ...
Life-Cycle Cost Analysis of Long-Span CFRP Cable-Stayed Bridges
Life-Cycle Cost Analysis of Long-Span CFRP Cable-Stayed Bridges
With the advantages of high strength, light weight, high corrosion and fatigue resistance, and low relaxation, carbon-fiber-reinforced polymer (CFRP) is an excellent cable material...
Detectability of an intermediate layer by magnetotelluric sounding
Detectability of an intermediate layer by magnetotelluric sounding
Abstract
The recent publication by Verma and Mallick (1979) on the detectability of an intermediate layer by time domain EM sounding provides some informative ans...

