This inventor holds 1 USPTO granted patent, plus 5 CIPO patents. Top assignee: Suncor Energy Inc.. Active years: 2023.
Company Filing History:
Years Active: 2023
Title: Fei Qi - Innovator in Predictive Systems for Fired Apparatus
Introduction
Fei Qi is a notable inventor based in Calgary, Canada. He has made significant contributions to the field of predictive systems, particularly in the context of fired apparatus such as boilers. His innovative approach focuses on enhancing the efficiency and reliability of these systems through advanced modeling techniques.
Latest Patents
Fei Qi holds a patent for "Systems and methods for predicting tube fouling in a fired apparatus, and for utilizing tube fouling predictions." This patent outlines a system and method to predict an indicator of tube fouling in a fired apparatus. The process involves collecting historical data when the tubing is clean to build a model that correlates an indicator of fouling, such as tube skin temperature, with boiler load. By comparing actual measurements against the model output, the error can indicate the level of tube fouling. Additionally, the rate of change of this error can be used to measure the fouling rate, allowing for more effective management of boiler operations.
Career Highlights
Fei Qi is currently employed at Suncor Energy Inc., where he applies his expertise in predictive modeling to improve operational efficiency. His work is instrumental in developing systems that enhance the performance of fired apparatus, contributing to the overall effectiveness of energy production.
Collaborations
Fei Qi collaborates with talented colleagues, including Mathew Walker and Eliyya Samara Shukeir. Together, they work on innovative projects that push the boundaries of technology in the energy sector.
Conclusion
Fei Qi's contributions to predictive systems in fired apparatus demonstrate his commitment to innovation and efficiency in energy production. His patent and collaborative efforts highlight the importance of advanced modeling techniques in improving operational performance.
