Beijing, China

Shuai Wen


Average Co-Inventor Count = 12.0

ph-index = 1


Company Filing History:


Years Active: 2025

where 'Filed Patents' based on already Granted Patents

1 patent (USPTO):

Title: Innovations of Shuai Wen in High-Enthalpy Shock Tunnel Diagnostics

Introduction

Shuai Wen is an accomplished inventor based in Beijing, China. He has made significant contributions to the field of aerospace aerodynamics, particularly in the area of diagnosing high-enthalpy shock tunnel parameters. His innovative work has implications for improving the efficiency and accuracy of flow field diagnostics in aerospace applications.

Latest Patents

Shuai Wen holds a patent for a "Method and system for diagnosing high-enthalpy shock tunnel parameters." This patent describes a method and system that utilize both contact measurement technology and non-contact spectrum measurement technology to diagnose the flow field parameters of high-enthalpy shock tunnels. The method allows for the measurement of various parameters, including flow field temperature, pressure, component category, and component concentration. Additionally, it provides insights into the non-equilibrium state information of the flow field and the effective working time of the wind tunnel.

Career Highlights

Shuai Wen is affiliated with the China Academy of Aerospace Aerodynamics, where he has been instrumental in advancing research and development in aerospace technologies. His expertise in high-enthalpy shock tunnel diagnostics has positioned him as a key figure in the field, contributing to both theoretical and practical advancements.

Collaborations

Shuai Wen has collaborated with notable colleagues, including Junmou Shen and Meixiao Hu. These collaborations have fostered a productive research environment, leading to innovative solutions in aerospace aerodynamics.

Conclusion

Shuai Wen's contributions to the field of high-enthalpy shock tunnel diagnostics exemplify the importance of innovation in aerospace technology. His patented methods and collaborative efforts continue to push the boundaries of what is possible in this critical area of research.

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