Indianapolis, IN, United States of America

Jacob E Determan


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: Jacob E Determan: Innovator in Fluid Dynamics

Introduction

Jacob E Determan is a notable inventor based in Indianapolis, IN (US). He has made significant contributions to the field of fluid dynamics, particularly through his innovative designs in diffusers. His work is characterized by a focus on enhancing the efficiency of fluid flow systems.

Latest Patents

Jacob E Determan holds a patent for a "Multi-passage diffuser with reactivated boundary layer." This invention features a diffuser that includes a splitter with a blunt forebody, which is instrumental in re-starting a boundary layer. The design allows for the creation of a static pressure bow wave that interacts with a passing fluid stream, effectively reducing the thickness of the boundary layer formed on an opposing wall. This re-start capability enables the upstream portion of the diffuser to be sized close to a separation limit, while the downstream portion can also be optimized similarly. Additionally, the passages split by the blunt forebody can be proportioned to balance flow between the branches, enhancing overall performance.

Career Highlights

Jacob is currently employed at Rolls-Royce Corporation, where he continues to apply his expertise in fluid dynamics. His work at this prestigious company underscores his commitment to advancing technology in the aerospace and engineering sectors.

Collaborations

Throughout his career, Jacob has collaborated with esteemed colleagues such as Charles Bryce Graves and Stuart M Bloom. These partnerships have contributed to the development of innovative solutions in their respective fields.

Conclusion

Jacob E Determan is a distinguished inventor whose work in fluid dynamics has led to significant advancements in diffuser technology. His innovative patent reflects his dedication to improving efficiency in fluid flow systems.

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