Houston, TX, United States of America

Ashley Christian


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 157(Granted Patents)


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Innovations by Ashley Christian in Pump Technology.

Introduction

Ashley Christian is an accomplished inventor based in Houston, TX (US). She has made significant contributions to the field of pump technology, particularly in the detection and avoidance of cavitation in reciprocating pumps. Her innovative approach has the potential to enhance the efficiency and reliability of fluid systems.

Latest Patents

Ashley holds a patent for a system and method for detecting cavitation in a reciprocating positive displacement pump. The patent, titled "Reciprocating pump cavitation detection and avoidance," involves comparing fluid pressure near the pump's suction manifold to a predetermined pressure conducive to cavitation. If the detected pressure is close to this predetermined level, the presence of cavitation is confirmed through the correlation of increased vibration. This invention is crucial for improving the performance and longevity of pumps in various applications.

Career Highlights

Ashley Christian is currently employed at Baker Hughes Corporation, a leading company in the energy sector. Her work focuses on developing advanced technologies that address critical challenges in fluid dynamics and pump operations. With her expertise, she contributes to innovative solutions that drive efficiency and sustainability in the industry.

Collaborations

Ashley collaborates with talented professionals, including her coworkers Thomas Jaeger and Gregory E Griffith. Together, they work on projects that push the boundaries of pump technology and enhance operational performance.

Conclusion

Ashley Christian's contributions to pump technology through her innovative patent demonstrate her commitment to advancing the field. Her work not only addresses current challenges but also paves the way for future innovations in fluid systems.

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