Company Filing History:
Years Active: 2024
Title: Innovations of Amitesh Roy in Combustion Technology
Introduction
Amitesh Roy is a notable inventor based in Chennai, India. He has made significant contributions to the field of combustion technology, particularly in addressing thermo-acoustic instabilities. His work is crucial for improving the efficiency and safety of combustion systems.
Latest Patents
Amitesh Roy holds a patent titled "Systems and methods for suppressing thermo-acoustic instabilities in a combustor." This invention addresses various oscillatory instabilities that occur in practical systems. It provides a methodology to combat these instabilities in thermoacoustic systems. The invention focuses on confined combustion environments that are susceptible to large amplitude pressure oscillations known as thermoacoustic instabilities. While several techniques have been employed to control these instabilities, they often require multiple trial and error experiments or simulations. Roy's invention develops a way to quantify the spatio-temporal dynamics using synchronization, recurrence, and fractal measures. This analysis helps detect critical regions responsible for thermoacoustic instability and implement optimized control strategies in turbulent flow fields.
Career Highlights
Amitesh Roy is affiliated with the Indian Institute of Technology Madras, where he conducts research and develops innovative solutions in combustion technology. His work has garnered attention for its practical applications in enhancing combustion efficiency and stability.
Collaborations
Amitesh collaborates with esteemed colleagues such as Sujith Raman, Indusekharan Pillai Nair, and Krishna Manoj. These collaborations contribute to the advancement of research in combustion systems and related fields.
Conclusion
Amitesh Roy's innovative work in suppressing thermo-acoustic instabilities represents a significant advancement in combustion technology. His contributions are vital for the development of more efficient and stable combustion systems.