Water coning is a serious issue for the oil and gas industry. This poses a big concern regarding the costs that to be incurred for separation and equipment capacity. Coning is the production of an unwanted phase with a desired phase. Over the years, many techniques and control methods has been birthed, however, the issue of coning can only be mitigated and not completely discharged. Reservoir and production engineers need to understand the basic framework; the parameters that greatly influence coning and how effective manipulation of it can deal with it. With the introduction of horizontal wells, the production rate is two to four times that of vertical wells, and coning is reduced and the breakthrough time is increased. Numerous p...
© Research India Publications. Wells drilled in the reservoirs with the bottom water drive are usual...
Wells drilled in the reservoirs with the bottom water drive are usually produced above the critical ...
Gas condensate reservoirs go under two kinds of changes in their lifetime. The phase change and the ...
This study attempts to predict post-breakthrough performance in horizontal wells as a result of wate...
Water coning presents a serious problem in many oil fields, in terms of reducing oil production rate...
The applications of horizontal well technology in developing hydrocarbon reservoirs have been widely...
In petroleum industry, oil production strategy to circumvent water coning in reservoirs with strong ...
This study presents the extensive simulation to control the concurrent behavior of gas and water con...
Water coning is the biggest production problem mechanism in Middle East oil fields, especially in th...
In the presence of an active aquifer, water coning (vertical wells) and water cresting (horizontal w...
Abstract The water coning caused by the imbalance between gravi...
Given the current public need for oil and gas as a primary energy, all oil and gas companies need to...
Summary. RecoveW from an oil zone underlying a gas cap, overlying an aquifer, or sandwiched between ...
This paper investigates the prediction of oil critical rate in vertical wells using Meyer-Gardner co...
This undergraduate level research covers an analysis in the reservoir phenomenon known as water conn...
© Research India Publications. Wells drilled in the reservoirs with the bottom water drive are usual...
Wells drilled in the reservoirs with the bottom water drive are usually produced above the critical ...
Gas condensate reservoirs go under two kinds of changes in their lifetime. The phase change and the ...
This study attempts to predict post-breakthrough performance in horizontal wells as a result of wate...
Water coning presents a serious problem in many oil fields, in terms of reducing oil production rate...
The applications of horizontal well technology in developing hydrocarbon reservoirs have been widely...
In petroleum industry, oil production strategy to circumvent water coning in reservoirs with strong ...
This study presents the extensive simulation to control the concurrent behavior of gas and water con...
Water coning is the biggest production problem mechanism in Middle East oil fields, especially in th...
In the presence of an active aquifer, water coning (vertical wells) and water cresting (horizontal w...
Abstract The water coning caused by the imbalance between gravi...
Given the current public need for oil and gas as a primary energy, all oil and gas companies need to...
Summary. RecoveW from an oil zone underlying a gas cap, overlying an aquifer, or sandwiched between ...
This paper investigates the prediction of oil critical rate in vertical wells using Meyer-Gardner co...
This undergraduate level research covers an analysis in the reservoir phenomenon known as water conn...
© Research India Publications. Wells drilled in the reservoirs with the bottom water drive are usual...
Wells drilled in the reservoirs with the bottom water drive are usually produced above the critical ...
Gas condensate reservoirs go under two kinds of changes in their lifetime. The phase change and the ...