Fort Collins, CO, United States of America

Gregory D Comes


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 26(Granted Patents)


Company Filing History:


Years Active: 1994

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1 patent (USPTO):Explore Patents

Title: Gregory D Comes: Innovator in Soil Measurement Technology

Introduction

Gregory D Comes is a notable inventor based in Fort Collins, CO (US). He has made significant contributions to the field of soil measurement technology, particularly through his innovative patent that enhances the efficiency of penetrometer systems.

Latest Patents

Gregory D Comes holds a patent for an "Air lubricated penetrometer rod system." This invention utilizes an air or gaseous fluid to lubricate the penetrometer, effectively reducing friction between the soil and the push rod string. By pumping air into the interior of the string, it is directed through exit ports into the annular space between the soil and the outer walls of the string. This innovative approach prevents soil from adhering to the sides of the string, thereby minimizing frictional forces that can hinder downward movement. The design of the exit ports, located above the instrument housing, ensures that accurate measurements can be obtained regarding soil properties. Gregory holds 1 patent for this groundbreaking technology.

Career Highlights

Gregory D Comes is currently employed by the US Government as represented by the Secretary of the Army. His work focuses on developing technologies that improve soil measurement techniques, which are crucial for various applications in engineering and environmental studies.

Collaborations

Gregory has collaborated with notable colleagues, including Stafford S Cooper and Philip Garcin Malone. These partnerships have contributed to the advancement of innovative solutions in soil measurement technology.

Conclusion

Gregory D Comes exemplifies the spirit of innovation in the field of soil measurement technology. His contributions, particularly through his patented air lubricated penetrometer rod system, have the potential to significantly enhance the accuracy and efficiency of soil assessments.

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