Process Simulation and Control Optimization of a Blast Furnace Using Classical Thermodynamics Combined to a Direct Search Algorithm
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Summary
Optimal operating conditions and predicted output stream properties calculated by the proposed thermodynamic simulation strategy are compared with reference data found in the literature and have proven the validity and high precision of this simulation.
- Type
- article
- Published
- 2014-02-01
- Cited by
- 31
- References
- 78
- Access
- Open access
- OpenAlex
- https://openalex.org/W2123534440
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17767168
Keywords
Blast furnace, Algorithm, Process (computing), Computer simulation, Coke
References
- Introduction to Derivative-Free Optimization
- SCANMETIV; 4th International Conference on Process Development in Iron and Steelmaking 報告
- Blast furnace- theory and practice
- The Iron Blast Furnace: Theory and Practice
- Optimization And Nonsmooth Analysis
- The making, shaping and treating of steel
- A genetic algorithms based multi-objective neural net applied to noisy blast furnace data
- Direct Conversion of Graphite to Diamond in Static Pressure Apparatus.
- Calorimetric studies of crystallization and relaxation of amorphous Si and Ge prepared by ion implantation
- SimuSage – the component library for rapid process modeling and its applications
- SGTE data for pure elements
- Thermodynamic stability of metallurgical coke relative to graphite
- Diamond-like amorphous carbon
- Genetic Algorithm-Based Multicriteria Optimization of Ironmaking in the Blast Furnace
- Determination of the crystallinity of calcined and graphitic cokes by X-ray diffraction†
- Characterization of Tuyere-Level Core-Drill Coke Samples from Blast Furnace Operation
- FactSage thermochemical software and databases - recent developments
- Crystallization of amorphous carbon in carbon-cobalt layered thin films
- Estimation of the critical glass transition rate and the inorganic glass thickness
- Recent Progress and Future Perspective on Mathematical Modeling of Blast Furnace
Cited by
- Large scale material science data analysis
- Susteinable steelmaking by process integration
- Evaluation of machine learning interpolation techniques for prediction of physical properties
- Process-time Optimization of Vacuum Degassing Using a Genetic Alloy Design Approach
- Evaluation of Low-Reducible Sinter in Blast Furnace Technology by Mathematical Model Developed at Centre ENET, VSB – Technical University of Ostrava
- Behavior of Chromium, Nickel, Lead, Zinc, Cadmium, and Mercury in the Blast Furnace—A Critical Review of Literature Data and Plant Investigations
- Identification Method of Blast-Furnace Process Parameters
- FactSage thermochemical software and databases, 2010–2016
- Reprint of: FactSage thermochemical software and databases, 2010–2016
- Profitability = f(G) : Computational Thermodynamics, Materials Design and Process Optimization
- A universal event-group based time series data mining framework for multi-variate time series classification
- Thermo-chemical model for blast furnace process control with the prediction of carbon consumption
- Modeling and simulation of hydrogen injection into a blast furnace to reduce carbon dioxide emissions
- Impact of operational parameters on fuel consumption of a blast furnace
- An Event Group Based Classification Framework for Multi-variate Sequential Data
- Thermodynamic Study of Trace Elements in the Blast Furnace and Basic Oxygen Furnace
- On the prediction of low-cost high entropy alloys using new thermodynamic multi-objective criteria
- Dissolution of carbon from coke and char in liquid Fe-C alloys
- Modelling the surface tension of liquid metals as a function of oxygen content
- Optimal Distribution of Iron Ore Raw Materials in Blast Furnace System
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