Stafford, TX, United States of America

John Thomas Mayo

USPTO Granted Patents = 4 

Average Co-Inventor Count = 5.3

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2023-2025

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4 patents (USPTO):Explore Patents

Title: John Thomas Mayo: Innovator in Subterranean Technology

Introduction

John Thomas Mayo is a notable inventor based in Stafford, TX (US), recognized for his contributions to subterranean technology. With a total of 4 patents, Mayo has made significant advancements in the field of well communication and fracture management.

Latest Patents

Mayo's latest patents include "Tube wave analysis of well communication," which involves generating a pressure wave within a first well and detecting the pressure response from a second well. This innovative method allows for the determination of information related to the subterranean formation and any fractures connected to the wells. Another significant patent is "Proppant-fiber schedule for far field diversion," which outlines methods for pumping a fracturing pad fluid into a subterranean formation to create fractures. This method includes the use of bridging particles and fibers to form a low permeability plug, enhancing the efficiency of the fracturing process.

Career Highlights

Mayo is currently employed at Schlumberger Technology Corporation, where he applies his expertise in subterranean technology. His work focuses on improving methods for well communication and fracture management, contributing to the advancement of the oil and gas industry.

Collaborations

Mayo has collaborated with several professionals in his field, including Dmitriy Usoltsev and Konstantin Viktorovich Vidma. These collaborations have fostered innovation and the development of new technologies in subterranean exploration.

Conclusion

John Thomas Mayo's contributions to subterranean technology through his patents and work at Schlumberger Technology Corporation highlight his role as an influential inventor in the industry. His innovative approaches continue to shape the future of well communication and fracture management.

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