Telangana, India

Kiran Vangari

USPTO Granted Patents = 2 

Average Co-Inventor Count = 3.4

ph-index = 1


Company Filing History:


Years Active: 2020-2022

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2 patents (USPTO):Explore Patents

Title: Kiran Vangari: Innovator in Turbomachinery Vibration Detection

Introduction

Kiran Vangari is a notable inventor based in Telangana, India. She has made significant contributions to the field of turbomachinery through her innovative patents. With a total of 2 patents, her work focuses on detecting rotor anomalies and fluid-induced instability conditions in turbomachines.

Latest Patents

One of Kiran's latest patents is titled "Detecting rotor anomalies by determining vibration trends during transient speed operation." This invention discloses an approach for detecting rotor anomalies by classifying vibration data from sensors into various rotor speed ranges. It determines a predetermined percentile vibration amplitude for each speed range and uses historical data to identify trends that may indicate rotor anomalies.

Another significant patent is "Systems and methods to detect a fluid induced instability condition in a turbomachine." This system monitors vibration characteristics in real-time and analyzes changes in operating parameters such as speed and loading conditions. It provides indications of potential operational risks and faults in turbomachinery components, particularly those affected by changes in fluid flow characteristics.

Career Highlights

Kiran Vangari is currently employed at General Electric Company, where she applies her expertise in vibration analysis and turbomachinery. Her innovative work has positioned her as a key contributor in her field.

Collaborations

Kiran has collaborated with notable colleagues, including Lucas Christopher Hunt and Robert Pries, enhancing her research and development efforts in turbomachinery.

Conclusion

Kiran Vangari's contributions to the field of turbomachinery through her innovative patents demonstrate her expertise and commitment to advancing technology. Her work in detecting rotor anomalies and fluid-induced instability conditions is paving the way for safer and more efficient turbomachinery operations.

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