Location History:
- Cypress, TX (US) (2001)
- Houston, TX (US) (2004)
Company Filing History:
Years Active: 2001-2004
Title: Gregory B. Cargle: Innovator in Refinery Technology
Introduction
Gregory B. Cargle is a notable inventor based in Houston, TX, who has made significant contributions to the field of refinery technology. With a total of 2 patents, Cargle's work focuses on enhancing the efficiency and functionality of steam-methane reformers and refinery process furnaces.
Latest Patents
Cargle's latest patents include a "Steam-methane reformer furnace with convection-heated pre-reformer." This invention employs a convection-heated pre-reformer that consists of catalyst-filled tubes positioned in the transition section between the radiant and convection sections. The pre-reformer is designed to achieve 10-20% of the total reforming load and can be installed as modules without increasing the size of the reformer.
Another significant patent is the "Refinery process furnace," which features horizontal-helical radiant coils and improved ladder-type supports for horizontal tubes. The design includes a tubeside fluid flow path that enhances the efficiency of the furnace. The innovative arrangement of the horizontal pipe sections and the support structure allows for thermal expansion and shifting, ensuring optimal performance.
Career Highlights
Gregory B. Cargle is currently employed at Kellogg Brown & Root, Inc., where he continues to develop and refine technologies that impact the refinery industry. His expertise in engineering and innovation has positioned him as a key player in his field.
Collaborations
Cargle collaborates with fellow inventor Daniel Joseph Barnett, contributing to advancements in refinery technology through their combined knowledge and experience.
Conclusion
Gregory B. Cargle's contributions to the field of refinery technology through his patents and work at Kellogg Brown & Root, Inc. highlight his role as an influential inventor. His innovative designs continue to shape the industry and improve operational efficiencies.