Niskayuna, NY, United States of America

Gregory A Natsui

USPTO Granted Patents = 1 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Gregory A. Natsui: Innovator in Fluid Flow Measurement and Control

Introduction

Gregory A. Natsui is a notable inventor based in Niskayuna, NY (US). He has made significant contributions to the field of fluid dynamics, particularly in the measurement and control of fluid flow rates. His innovative approach utilizes non-disruptive methods to enhance the efficiency of fluid systems.

Latest Patents

Natsui holds a patent for "Systems and methods for non-disruptive estimation and control of fluid flow rates." This patent describes systems and methods that provide flow rate measurement and control of drives, such as fluid circulators, using non-disruptive sensors. These sensors measure fluid pressures, temperature, density, and pressure drop at or across the drive. By utilizing these sensor outputs, the mass flow rate can be accurately calculated without redirecting or interacting with the fluid flow. This innovation enhances fluid flow efficiency and extends the life of the system. The technology can be implemented on both existing and new drives with minimal changes to the conduit.

Career Highlights

Gregory A. Natsui is currently employed at GE-Hitachi Nuclear Energy Americas LLC, where he continues to develop and refine technologies related to fluid dynamics. His work has been instrumental in advancing the capabilities of fluid control systems in various applications.

Collaborations

Natsui has collaborated with notable colleagues, including Jerry W. Nicholson and Giridhar Jothiprasad. Their combined expertise contributes to the innovative projects at GE-Hitachi Nuclear Energy Americas LLC.

Conclusion

Gregory A. Natsui's contributions to fluid flow measurement and control demonstrate his commitment to innovation in engineering. His patent reflects a significant advancement in the field, showcasing the potential for improved efficiency in fluid systems.

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