WENBO WU, KAILAI CHEN
Optimizing process parameters is essential for maintaining stable and efficient blast furnace (BF) operations under varying conditions. However, most existing methods focus on overall performance and overlook the internal states of the furnace that govern BF behavior, which can result in abnormal or suboptimal operations. This paper proposes an optimization model that incorporates AI-predicted internal states into the optimization process. The model is solved by integrating a metaheuristic algorithm with a recently developed prediction model that combines a mechanistic model and a data-driven model. Two key innovations are introduced. First, the AI-predicted shape of the cohesive zone, which largely governs BF performance, is embedded as constraints to filter out candidate solutions associated with unexpected internal states. Additionally, due to the high computational cost of mechanistic data, an optimization algorithm with a controllable search domain is proposed to guarantee prediction accuracy under sparse and uneven mechanistic sampling. Comparative analyses demonstrate that the proposed method effectively selects optimal parameters within a predefined distance. The obtained parameters are not only globally optimal in mathematics but also physically achievable, as verified by the mechanistic model. The model’s flexibility supports its use in diverse multi-objective tasks, suggesting great potential for reliable parameter optimization in an industrial environment.
@article{2a35e497-d5f3-4b83-b9d8-ae43b3ae2324,
title={2026 Wu Blast Furnace Multiobjective Optimization},
author={WENBO WU and KAILAI CHEN},
year={2026},
language={en}
}TY - JOUR TI - 2026 Wu Blast Furnace Multiobjective Optimization AU - WENBO WU AU - KAILAI CHEN PY - 2026 LA - en ER -
Ian Cameron, Mitren Sukhram
This book delves into the intricate processes involved in blast furnace ironmaking, emphasizing the analysis, control, and optimization of operations.
This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data
Roger Rumbu
This paper provides a detailed investigation into the role of hot gas circulation in metallurgical fluid bed roasters, aiming to enhance heat and mass
Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle