Performance of Positive Displacement Motor (PDM) Operating On Air

Author:

Samuel G. Robello1,Miska Stefan2

Affiliation:

1. Landmark Graphics Corporation, Drilling & Well Services (R&D), Houston, Texas

2. Department of Petroleum Engineering, Director, Tulsa University Drilling Research Projects, University of Tulsa, Tulsa, Oklahoma

Abstract

Recent increase in application of horizontal wells and in particular underbalanced drilling, has triggered the necessity of a powerful pneumatic downhole motor. To enhance the technology and make the system effective, a mathematical model is required to identify the opportunities for the modification of power section design. It is well known that the performance of positive displacement motor operating on compressible fluid drops down drastically as compared to the operation under incompressible fluids. The frequent motor replacement during the operation incrementally increases the operating cost despite deriving potential benefits from underbalanced drilling.

Publisher

ASME International

Subject

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

Reference10 articles.

1. Magner, H. J. Oct., 1960, “Air Motor Drill,” The Petroleum Engineer.

2. Robello Samuel, G., 1996, “Percussion Drilling. Is it a Lost Technique?… A Review,” SPE 35204.

3. Li, J., Tudor, R., and Cox, R., 1997, “Positive Displacement Motor Test With Two-Phase Flow,” SPE/ICOTA 38425. Second International North American Coiled Tubing Roundtable.

4. Shale, L., Feb.2, 1992, “Downhole Motor Specifically Designed for Directional Air Drilling,” OGJ.

5. Robello Samuel, G., 1998, “Mathematical Modeling and Design Analysis of the Power Section of a Positive Displacement Motor (PDM),” Ph.D. Dissertation, University of Tulsa, Tulsa, OK.

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