Oviedo, FL, United States of America

Gregory Robert Gaul


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 17(Granted Patents)


Company Filing History:


Years Active: 1998

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1 patent (USPTO):Explore Patents

Title: Gregory Robert Gaul: Innovator in Cooling Technology

Introduction

Gregory Robert Gaul is a notable inventor based in Oviedo, Florida. He has made significant contributions to the field of cooling technology, particularly in the design of systems for combustion turbines. His innovative approach has led to the development of a patented cooling supply manifold assembly.

Latest Patents

Gaul holds a patent for a "Cooling supply manifold assembly for cooling combustion turbine." This invention provides a cooling manifold assembly that comprises at least a first and second connector box. Each connector box includes a housing, with a fluid supply conduit and return conduit securely coupled to it. The fluid supply conduit is designed for fluid communication with a cooling fluid, which is essential for cooling hot turbine components. The return conduit facilitates the return of cooling fluid that has absorbed heat from these components. This innovative design enhances the efficiency of cooling systems in combustion turbines.

Career Highlights

Gregory Robert Gaul is associated with Westinghouse Electric Corporation, where he has applied his expertise in engineering and innovation. His work focuses on improving the performance and reliability of turbine systems through advanced cooling solutions. Gaul's contributions have been instrumental in enhancing the operational efficiency of combustion turbines.

Collaborations

One of Gaul's notable collaborators is Leroy D. McLaurin. Together, they have worked on various projects that aim to advance cooling technologies in the energy sector.

Conclusion

Gregory Robert Gaul's innovative work in cooling technology, particularly his patented cooling supply manifold assembly, showcases his commitment to improving combustion turbine systems. His contributions continue to influence the field and enhance the efficiency of energy production.

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