This inventor holds 2 USPTO granted patents and 1 published patent application, plus 1 CIPO patent and 1 EPO patent. Top assignee: Paul Wurth S.a.. Active years: 2015-2026.
Company Filing History:
Years Active: 2015-2026
Title: Innovations by Fabrice Hansen in Blast Furnace Technology
Introduction
Fabrice Hansen is an accomplished inventor based in Doncols, Luxembourg. He has made significant contributions to the field of blast furnace technology, holding 2 patents that focus on improving thermal control and charging processes in blast furnaces.
Latest Patents
Hansen's latest patents include a "Computer system and method providing operating instructions for thermal control of a blast furnace." This invention utilizes a reinforcement learning model to optimize thermal control actions by processing historical operating data and generating artificial operating data. The model aims to learn optimized operating instructions for various operating states of blast furnaces.
Another notable patent is the "Computer system and method for controlling charging of a blast furnace by means of a user interface." This invention involves a user-friendly graphical interface that allows for the pre-configuration of batch datasets for charging materials into a blast furnace. It computes the necessary batching quantities based on nominal charge datasets, enhancing the efficiency of the charging process.
Career Highlights
Fabrice Hansen is currently employed at Paul Wurth S.A., a company known for its expertise in the field of metallurgical engineering. His work focuses on developing innovative solutions that enhance the operational efficiency of blast furnaces.
Collaborations
Hansen collaborates with notable colleagues such as Paul Tockert and Damien Meyer, contributing to a team that is dedicated to advancing blast furnace technology.
Conclusion
Fabrice Hansen's innovative patents and contributions to blast furnace technology demonstrate his commitment to enhancing industrial processes. His work continues to influence the field and improve operational efficiencies in metallurgical engineering.
