SIMULATION OF MATERIALS FOR CEMENT PLANT USING MATLAB | Thịnh | TNU Journal of Science and Technology

SIMULATION OF MATERIALS FOR CEMENT PLANT USING MATLAB

About this article

Received: 10/09/25                Revised: 30/11/25                Published: 30/11/25

Authors

1. Ha Thi Thinh Email to author, Nam Dinh University of Technology Education
2. Nguyen Thi Kha, Nam Dinh University of Technology Education

Abstract


This paper discusses the use of Matlab/Simulink as a base tool for both simulation and solution to raw mix calculation in clinker production in cement plant. Since this environment allows us to construct intuitive block- diagram models, it can be used as a good training and research tool to investigate intricate processes visually, safely, and inexpensively. In clinker manufacture, in addition to technological and operational parameters, the chemical composition of raw materials, mainly its principal oxides (CaO, SiO₂, Al₂O₃, Fe₂O₃,), is very important for product quality control. Based on this foundation, the paper develops a raw mix calculation process and to build a Matlab/Simulink model in order to simulate the links between the different raw material components, and assess the effect of changes in mix proportions on clinker properties. Simulation results show that the model can deliver accurate outcomes with high reliability, presenting a clear and flexible tool to better assist learners and researchers for an effective approach to real production processes by maintaining technology optimization. The work can be summed up as follows: the use of Simulink for raw mix computations not only improves efficiency in teaching and learning, but also has practical implications in industry for cement production.

Keywords


Matlab; Raw mix calculation; Clinker production; Simulation; Cement industry

References


[1] V. C. Phan, Portland Cement Production Technology. Hanoi, Vietnam: Science and Technology Publishing House, 2004.

[2] V. C. Phan, Rotary Kiln Cement Production Technology. Hanoi, Vietnam: Science and Technology Publishing House, 2004.

[3] Q. C. Nguyen, Cement Production Technology. Hanoi, Vietnam: Construction Publishing House, 2006.

[4] J. L. Svensen et al., “Dynamical Simulation Model of the Pyro-Process in Cement Clinker Production,” arXiv preprint arXiv:2504.02886, Apr. 2025.

[5] J. L. Svensen et al., “A Dynamical Simulation Model of a Cement Clinker Rotary Kiln,” arXiv preprint arXiv:2405.03200, May 2024.

[6] D. A. Nguyen, Automation of Production Processes, Hanoi, Vietnam: Science and Technology Publishing House, 2016.

[7] V. C. Phan, Vertical Kiln Cement Production Technology. Hanoi, Vietnam: Science and Technology Publishing House, 2001.

[8] P. Hewlett, Lea’s Chemistry of Cement and Concrete, 5th ed. Oxford, UK: Butterworth-Heinemann, 2019.

[9] M. Türkseven, “Modeling and validation of a clinker production process,” Journal of Process Control, vol. 136, pp. 103–115, 2025.

[10] S. J. Fayaz et al., “Industrial-scale Prediction of Cement Clinker Phases using Machine Learning,” Communications Engineering, vol. 3, no. 1, pp. 1–12, May 2025.

[11] J. P. Gonçalves, “Analysis and optimization of cement clinker quality using thermodynamic simulations,” Cement and Concrete Research, vol. 175, 2024, Art. no. 106508.




DOI: https://doi.org/10.34238/tnu-jst.13584

Refbacks

  • There are currently no refbacks.
TNU Journal of Science and Technology
Rooms 408, 409 - Administration Building - Thai Nguyen University
Tan Thinh Ward - Thai Nguyen City
Phone: (+84) 208 3840 288 - E-mail: jst@tnu.edu.vn
Based on Open Journal Systems
©2018 All Rights Reserved