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- W3023324819 abstract "Publisher SummaryThis study explains the concepts, theory, and sizing equations for the separation of two immiscible liquid phases (in this case, those liquids are normally crude oil and produced water). “Three-phase separator” and “free-water knockout” are terms used to describe pressure vessels that are designed to separate and remove the free water from a mixture of crude oil and water. Because flow normally enters these vessels directly from either a producing well or a separator operating at a higher pressure, the vessel must be designed to separate the gas that flashes from the liquid as well as separate the oil and water. The term “three-phase separator” is normally used when there is a large amount of gas to be separated from the liquid, and the dimensions of the vessel are determined by the gas capacity equations. “Free-water knockout” is generally used when the amount of gas is small relative to the amount of oil and water, and the dimensions of the vessel are determined by the oil–water separation equations, which is also briefly discussed in this chapter. The basic design aspects of three-phase separation are identical to those discussed for two-phase separation. The only additions are that more concern is placed on liquid-liquid settling rates and that some means of removing the free water must be added. Liquid-liquid settling rates are also discussed later in this chapter. Water removal is a function of the control methods used to maintain separation and removal from the oil. Several control methods are applicable to three-phase separators. The shape and diameter of the vessel will, to a degree, determine the types of control used." @default.
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- W3023324819 date "2008-01-01" @default.
- W3023324819 modified "2023-09-26" @default.
- W3023324819 title "Three-Phase Oil and Water Separation" @default.
- W3023324819 doi "https://doi.org/10.1016/b978-075067853-7.50008-9" @default.
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