LAPSE:2023.8922
Published Article

LAPSE:2023.8922
Structure Optimization Research Based on Numerical Simulation of Flow Field in Ammonia-Based Wet Sintering Flue Gas Desulfurization
February 24, 2023
Abstract
Although more and more desulfurization equipment has been put into use in sintering plants, how to effectively remove sulfur dioxide from sintering flue gas in a desulfurization tower is still a great challenge in China. The desulfurization tower, as a critical part, needs further improvement and optimization. Therefore, based on the numerical simulation of the flow field of the ammonia-based wet desulfurization tower for sintering flue gas, ANSYS CFX is applied to conduct structural optimization research. Comparing the flow field distribution under different structure conditions, the results show that the flue gas distribution of the dual inlet tower is more uniform than that of the single inlet tower. The designed baffle not only effectively blocks the entry of the spray slurry, but also improves the flue gas distribution; the deflector with its simple structure, convenient operation, and stepped distribution installed in the entrance section can improve the uniformity of the flow field distribution. Based on the comprehensive analysis, these optimized structures are recommended in the design of an ammonia-based wet sintering flue gas desulfurization tower. This work not only develops a simulation of the desulfurization tower but also provides practical structures.
Although more and more desulfurization equipment has been put into use in sintering plants, how to effectively remove sulfur dioxide from sintering flue gas in a desulfurization tower is still a great challenge in China. The desulfurization tower, as a critical part, needs further improvement and optimization. Therefore, based on the numerical simulation of the flow field of the ammonia-based wet desulfurization tower for sintering flue gas, ANSYS CFX is applied to conduct structural optimization research. Comparing the flow field distribution under different structure conditions, the results show that the flue gas distribution of the dual inlet tower is more uniform than that of the single inlet tower. The designed baffle not only effectively blocks the entry of the spray slurry, but also improves the flue gas distribution; the deflector with its simple structure, convenient operation, and stepped distribution installed in the entrance section can improve the uniformity of the flow field distribution. Based on the comprehensive analysis, these optimized structures are recommended in the design of an ammonia-based wet sintering flue gas desulfurization tower. This work not only develops a simulation of the desulfurization tower but also provides practical structures.
Record ID
Keywords
ammonia-based WFGD, flow field, numerical simulation, sintering flue gas, structure optimization
Subject
Suggested Citation
Li L, Zhang B, Zhu P, Yu L, Zhao G, Li M, Wang H. Structure Optimization Research Based on Numerical Simulation of Flow Field in Ammonia-Based Wet Sintering Flue Gas Desulfurization. (2023). LAPSE:2023.8922
Author Affiliations
Li L: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Zhang B: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Zhu P: Wuhan Longking Science & Technology Co., Ltd., Wuhan 430205, China
Yu L: School of Power and Mechanical Engineering, Wuhan University, Wuhan 430072, China
Zhao G: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Li M: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Wang H: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Zhang B: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Zhu P: Wuhan Longking Science & Technology Co., Ltd., Wuhan 430205, China
Yu L: School of Power and Mechanical Engineering, Wuhan University, Wuhan 430072, China
Zhao G: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Li M: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Wang H: State Grid Henan Electric Power Research Institute, Zhengzhou 450052, China
Journal Name
Energies
Volume
15
Issue
20
First Page
7771
Year
2022
Publication Date
2022-10-20
ISSN
1996-1073
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Original Submission
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PII: en15207771, Publication Type: Journal Article
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LAPSE:2023.8922
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https://doi.org/10.3390/en15207771
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Feb 24, 2023
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