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- W1978683207 abstract "Abstract A homogenous model applicable for reservoir fluids flowing along a pipe with constant cross-sectional area is presented. This model is simplified for flowing fluids across a circular pipe at steady state. The differential conservation laws of mass, momentum, and energy are applied. By estimating the multiphase fluid properties, the differential laws of conservation are solved to compute the change in the pressure, temperature, and flowing velocity. The velocity is computed by knowing the fluid density. Because the flow might not be in equilibrium, the density of the multiphase fluid system is not calculated from any equation of state. Two approaches are presented to determine the density at non-equilibrium conditions. One is the differential conservation law of gas mass that can be solved by estimating the relaxation in time of gas separation, and the other is predicting the liquid holdup by estimating the slip ratio which is the ratio of the phase velocities. The later was used for the application. The presented homogeneous model combined with the proposed and novel liquid holdup model is applied to the study cases. The results of the application are employed to predict and characterize the nature of the relaxation time for hydrocarbon fluids." @default.
- W1978683207 created "2016-06-24" @default.
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- W1978683207 date "2008-09-21" @default.
- W1978683207 modified "2023-09-28" @default.
- W1978683207 title "Accurate Modeling of Relaxation Time and Liquid Holdup for Multiphase Flow in Production Wells" @default.
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- W1978683207 doi "https://doi.org/10.2118/115738-ms" @default.
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