West Simsbury, CT, United States of America

Glenn T Selby



 

Average Co-Inventor Count = 4.6

ph-index = 1

Forward Citations = 2(Granted Patents)


Location History:

  • Simsbury, CT (US) (2016)
  • West Simsbury, CT (US) (2017 - 2020)

Company Filing History:


Years Active: 2016-2020

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3 patents (USPTO):Explore Patents

Title: Glenn T. Selby: Innovator in Power Plant Technology

Introduction

Glenn T. Selby is a notable inventor based in West Simsbury, CT (US). He has made significant contributions to the field of power plant technology, holding a total of 3 patents. His work focuses on improving the efficiency and reliability of energy systems.

Latest Patents

One of Selby's latest patents is for a combined cycle power plant. This invention relates to a combined cycle power plant that includes a gas turbine, a shaft connecting a compressor to a turbine, and a first generator, along with a heat recovery steam generator fluidly connected to the exhaust of the gas turbine. Another significant patent involves a nozzle and nozzle assembly designed to minimize combined thermal and pressure stress during transients. In this invention, stress analysis is utilized to identify areas of stress concentration, and the nozzle is configured to reduce these stress concentrations.

Career Highlights

Throughout his career, Glenn T. Selby has worked with prominent companies in the energy sector, including General Electric Technology GmbH and General Electric Company. His experience in these organizations has allowed him to develop innovative solutions that address critical challenges in power generation.

Collaborations

Selby has collaborated with various professionals in his field, including Christoph Bernhard Ruchti and Wesley Paul Bauver, II. These collaborations have contributed to the advancement of technology in power systems.

Conclusion

Glenn T. Selby is a distinguished inventor whose work in power plant technology has led to valuable innovations. His patents reflect a commitment to enhancing energy efficiency and reliability in power generation systems.

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