Livermore, CA, United States of America

Chunsheng Ji


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: **Inventor Spotlight: Chunsheng Ji**

Introduction

Chunsheng Ji is an esteemed inventor based in Livermore, California, recognized for his contributions to the field of internal combustion engines. With a focus on enhancing engine performance, Ji has developed innovative methods that have the potential to revolutionize engine efficiency and reduce emissions.

Latest Patents

Chunsheng Ji holds one notable patent titled "Method for increasing the high load (knock) limit of an internal combustion engine operated in a low temperature combustion mode." This invention discloses a method aimed at improving the high load (knock) limit of engines operating under low temperature combustion conditions. The method involves utilizing a specific fuel composition that includes gasoline with a Research Octane Number (RON) greater than 85, along with one or more cetane improvers, which ultimately enhances engine performance.

Career Highlights

Ji is currently employed at Chevron U.S.A. Inc., where he applies his expertise in engine technology to advance the company’s research and development efforts. His work has contributed significantly to the understanding and optimization of fuel combustion processes in engines, positioning him as a valuable asset within the industry.

Collaborations

Throughout his career, Chunsheng Ji has collaborated with several talented professionals, including coworkers William James Cannella and Amir Gamal Maria. These collaborations foster interdisciplinary approaches that help drive innovation in engine technology and fuel efficiency solutions.

Conclusion

Chunsheng Ji's innovative approaches and successful patenting endeavors in the field of internal combustion engines highlight his role as a key figure in engine research and development. His work not only enhances engine performance but also contributes to the ongoing quest for more efficient and environmentally friendly combustion technologies.

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