Novel method for temperature prediction in rotary kiln process through machine learning and CFD
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Elsevier BV
Reference42 articles.
1. Rotary Kiln, a unit on the border of the process and energy—current state and perspectives;Bojanovský;Sustainability,2022
2. Improved fuel conversion through oxygen carrier aided combustion during incineration of biomass-based solid waste in a rotary kiln;Liu;Fuel,2023
3. Rotary kiln thermal simulation model and smart supply chain logistics transportation monitoring management;Liu;J. Adv. Transp.,2022
4. Kinetics of thermal decomposition of pulverized coal particles;Badzioch;Ind. Eng. Chem. Process. Des. Dev.,1970
5. Numerical analysis of an entire ceramic kiln under actual operating conditions for theefficiency improvement;Milani;J. Environ. Manag.,2017
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