Chengdu, China

Zhong Tian


Average Co-Inventor Count = 10.0

ph-index = 1


Company Filing History:


Years Active: 2015

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1 patent (USPTO):Explore Patents

Title: Innovations of Zhong Tian: A Look into His Patent and Contributions

Introduction

Zhong Tian, an inventive mind based in Chengdu, China, has made significant strides in the field of engineering with his innovative patent. With one patent to his name, he has contributed to advancements in the design of aerated swirling vertical shafts.

Latest Patents

Zhong Tian's sole patent, titled "Aerated Swirling Vertical Shaft with Double Volute Chambers," encompasses a unique design that includes an upper volute chamber, a first shrinking section, a venting passage, a vertical shaft section, and an aerated lower volute chamber. This innovation aims to facilitate the smooth discharge of water streams in vertical shafts while preventing damage from cavitation and cavitation erosion. The configuration of the double volute chambers optimizes the hydraulic performance, showcasing his ingenuity in solving complex engineering challenges.

Career Highlights

Zhong Tian is currently affiliated with Sichuan University, where he is involved in research and development in the field of fluid mechanics and engineering systems. His contributions to the academic community highlight his commitment to fostering innovation and enhancing practical applications of engineering principles.

Collaborations

Throughout his career, Zhong Tian has worked alongside talented colleagues, including Jianmin Zhang and Weilin Xu. These collaborations have facilitated a rich exchange of ideas and expertise, contributing to the development of innovative solutions in their respective fields.

Conclusion

Zhong Tian's inventive spirit and significant contributions to engineering are exemplified through his patent on the aerated swirling vertical shaft with double volute chambers. As he continues to collaborate with fellow researchers and advance his work at Sichuan University, his innovations will likely play a pivotal role in enhancing the capabilities of hydraulic systems in the future.

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