Ann Arbor, MI, United States of America

Joanna E Thielen


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Joanna E. Thielen and Her Groundbreaking Patent in Fluid Mechanics

Introduction: Joanna E. Thielen, an accomplished inventor based in Ann Arbor, MI, has made significant contributions to the field of fluid mechanics through her innovative research and patented technology. With her expertise and dedication, she has developed solutions that address complex challenges in material flow and processing.

Latest Patents: Joanna holds a patent for "Controlled Coalescence of Gas Phase Segmented Droplets." This invention introduces a method for coalescing a one-dimensional linear array of liquid plugs, separated by a gas phase. By either pumping the array through a conduit with a restrictive flow or applying a sudden increase in pressure, the gas phase is compressed into partial or full solubility within the liquid components. This patent showcases her ability to merge theoretical knowledge with practical application, enhancing the efficiency of fluid systems.

Career Highlights: Joanna is affiliated with the University of Michigan, where she contributes to research and development in her field. Her role not only positions her as a leading innovator but also allows her to mentor upcoming engineers and scientists, sharing her insights and expertise.

Collaborations: Throughout her career, Joanna has collaborated with esteemed colleagues like Robert T. Kennedy and Qiang Li. These partnerships have fostered a rich academic and research environment, yielding valuable advancements in their respective fields.

Conclusion: Joanna E. Thielen exemplifies the spirit of innovation through her patented work on controlled coalescence of gas phase droplets. Her contributions at the University of Michigan and her collaborations with fellow researchers underscore the importance of teamwork and creativity in advancing technology. As she continues to explore new frontiers, the impact of her work will undoubtedly resonate within the scientific community and beyond.

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