Columbus, OH, United States of America

Yong-Tae Kang


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 24(Granted Patents)


Company Filing History:


Years Active: 1997

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1 patent (USPTO):Explore Patents

Title: Yong-Tae Kang: Innovator in Capillary Fluted Tube Technology

Introduction

Yong-Tae Kang is a notable inventor based in Columbus, OH (US). He has made significant contributions to the field of mass and heat transfer devices through his innovative patent. His work focuses on enhancing the efficiency of heat transfer processes, which is crucial in various industrial applications.

Latest Patents

Yong-Tae Kang holds a patent for "Capillary fluted tube mass and heat transfer devices and methods of use." This invention features a capillary twisted fluted tube designed with an interior helical capillary flute and associated interior helical crest. The complementary exterior helical crest and flute facilitate the rise of liquid within the tube, which is expelled in fine droplets at the top. This design promotes mass transfer efficiencies by improving vapor-equilibrium. The invention also includes a capillary fluted tube placed in a helical groove of heat insulating material, which enhances capillary rise and liquid expulsion. The exterior heat transfer is further improved by enclosing the tube in a second tube or forming it into a winding, thus optimizing heat transfer fluid flow.

Career Highlights

Yong-Tae Kang is affiliated with The Ohio State University, where he continues to contribute to research and innovation in heat transfer technologies. His work has implications for various applications, including energy efficiency and thermal management.

Collaborations

Yong-Tae Kang has collaborated with notable colleagues such as Richard N. Christensen and F. Bert Cook. Their combined expertise has further advanced the research and development of innovative heat transfer solutions.

Conclusion

Yong-Tae Kang's contributions to capillary fluted tube technology exemplify the importance of innovation in enhancing mass and heat transfer efficiencies. His work not only advances scientific understanding but also has practical applications in improving energy efficiency across various industries.

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