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Pressure Gradient of Unsteady Flow of Fluid in Eccentric Annulus with the Inner Cylinder Reciprocating Axially
Author: BaoZhiJing
Tutor: CuiHaiQing;ChangZuo
School: Daqing Petroleum Institute
Course: Oil and Gas Field Development Project
Keywords: Newtonian fluid reciprocating axially eccentric annulus unsteady flow pressure gradient
CLC: TE355
Type: Master's thesis
Year: 2008
Downloads: 39
Quote: 4
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Abstract
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During the process of oil production, the sucker rod is eccentric due to the depth of the. Therefore, the produced fluid unsteadily flows in eccentric annulus between the tube and the sucker rod reciprocating axially. Research on pressure gradient of such flow is of certain practical engineering significance for preventing eccentric wear and optimizing the working parameters of pumps in wells.In this paper, Newtonian fluid model is used to describe rheological properties of the produced fluid; equation of motion, initial condition and boundary conditions of the unsteady flow of Newtonian fluid in eccentric annulus with the inner cylinder reciprocating axially are given under the rectangular Cartesian coordinate system and bipolar coordinate system, respectively; governing equations of the flow are transformed using the method of undetermined coefficients and the expression of pressure gradient of the flow is obtained with the given flow rate; using water, the pressure gradient is numerically calculated by finite volume method; the influences of eccentricity of annulus, stroke and frequency of the inner cylinder on the pressure gradient of water flowing in eccentric annulus with the inner cylinder reciprocating axially are analyzed. The results show that instantaneous pressure gradient of the flow is obviously influenced by eccentricity, stroke and frequency of the inner cylinder, and time-average pressure gradient decreases with eccentricity, stoke and frequency of the inner cylinder increasing, respectively.
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CLC: > Industrial Technology > Oil and gas industry > Oil and gas development and mining > Production Engineering > Oil recovery technology
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