Harlton, United Kingdom

Peter Long


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 154(Granted Patents)


Company Filing History:


Years Active: 1997

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1 patent (USPTO):Explore Patents

Title: Innovations of Peter Long in Multiphase Flow Measurement

Introduction

Peter Long is an accomplished inventor based in Harlton, GB. He has made significant contributions to the field of fluid measurement, particularly in the area of multiphase flows. His innovative approach has led to the development of a patented device that enhances the accuracy of flow rate measurements in complex fluid mixtures.

Latest Patents

Peter Long holds a patent for a "Method and apparatus for measuring multiphase flows." This device is designed to measure the flow rate of multiphase fluids, such as oilwell effluents that contain liquid hydrocarbons, gas, and water. The invention features two sections positioned at a distance from each other in the flow direction. Each section includes a passage equipped with structures like venturis to induce changes in speed. The device also incorporates means for measuring the resulting pressure differences. The pressure difference signals obtained from the respective sections can be cross-correlated to produce a signal that accurately represents the total volume flow rate.

Career Highlights

Peter Long is currently employed at Schlumberger Technology Corporation, where he continues to work on innovative solutions in fluid measurement. His expertise and dedication to advancing technology in this field have made him a valuable asset to his team.

Collaborations

Peter has collaborated with notable colleagues such as Gerard Segeral and Ian Atkinson. Their combined efforts contribute to the ongoing development of cutting-edge technologies in the industry.

Conclusion

Peter Long's contributions to the measurement of multiphase flows exemplify the impact of innovation in engineering and technology. His patented device represents a significant advancement in the field, showcasing his commitment to improving measurement accuracy in complex fluid systems.

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