Humble, TX, United States of America

Timothy Michael Spinner


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Innovations of Timothy Michael Spinner

Introduction

Timothy Michael Spinner is an accomplished inventor based in Humble, Texas. He has made significant contributions to the field of subterranean formations through his innovative patent. His work focuses on enhancing the efficiency of fracture placement and design in shale reservoirs.

Latest Patents

Spinner holds a patent titled "Fracturability index maps for fracture placement and design of shale reservoirs." This patent outlines methods and systems for generating a fracturability index that aids in identifying fracture locations and propagation in subterranean formations. The process involves dividing a well path into multiple segments and determining the optimal order of fracture locations based on production efficiency. This methodology can be repeated for additional paths, allowing for the generation of data that prioritizes segments and identifies fracture locations effectively. The data is compiled into a fracturability index map, which serves as a valuable tool for engineers and geologists.

Career Highlights

Timothy Spinner is affiliated with the Texas Tech University System, where he continues to contribute to research and innovation in the field of geology and engineering. His expertise in fracture mechanics and subterranean analysis has positioned him as a key figure in advancing techniques for resource extraction.

Collaborations

Spinner has collaborated with notable colleagues, including Ahmed Alzahabi and Mohamed Yousef Soliman. Their combined efforts have furthered research and development in the area of shale reservoir management.

Conclusion

Timothy Michael Spinner's innovative work in fracture placement and design has made a significant impact on the field of subterranean formations. His patent serves as a crucial resource for optimizing production in shale reservoirs.

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