Experimental Visualization of Two-Phase Flow Inside an Electrical Submersible Pump Stage

Author:

Barrios Lissett1,Prado Mauricio Gargaglione2

Affiliation:

1. Exploration & Production Shell Oil, Houston, TX 77025

2. Department of Petroleum Engineering, The University of Tulsa, Tulsa, OK 74104

Abstract

Dynamic multiphase flow behavior inside a mixed flow electrical submersible pump (ESP) has been studied experimentally and theoretically for the first time. The overall objectives of this study are to determine the flow patterns and bubble behavior inside the ESP and to predict the operational conditions that cause surging. An experimental facility has been designed and constructed to enable flow pattern visualization inside the second stage of a real ESP. Special high-speed instrumentation was selected to acquire visual flow dynamics and bubble size measurements inside the impeller channel. Experimental data were acquired utilizing two types of tests (surging test and bubble diameter measurement test) to completely evaluate the pump behavior at different operational conditions. A similarity analysis performed for single-phase flow inside the pump concluded that viscosity effects are negligible compared to the centrifugal field effects for rotational speeds higher than 600 rpm. Therefore, the two-phase flow tests were performed for a rotational speeds of 600, 900, 1200, and 1500 rpm. Results showed formation of a large gas pocket at the pump intake during surging conditions.

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference26 articles.

1. Andras, E. , 1997, “Two Phase Flow Centrifugal Pump Performance,” Ph.D. Dissertation, Idaho State University.

2. Beltur, R. , 2003, “Experimental Investigation of Two-Phase Flow Performance of Electrical Submersible Pump Stages,” MS thesis, The University of Tulsa.

3. Creare, Inc., 1982, “Two-Phase Performance of Scale Models of a Primary Coolant Pump,” EPRF NP-2578.

4. Duran, J., and Prado, M., 2003, “ESP Stages Air-Water Two-Phase Performance—Modeling and Experimental Data,” SPE 87627.

5. Estevam, V. , 2002, “A Phenomenological Analysis about Centrifugal Pump in Two-Phase Flow Operation,” Ph.D. thesis Campinas, Universidade Estadual de Campinas, Faculdade de Engenharia Mecânica.

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