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Research Articles

Theoretical analysis and numerical simulation study on the structural optimization of conical channels in the center tube of a centrifugal radial bed

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References

  • Acrivos, A., B. D. Babcock, and R. L. Pigford. 1959. Flow distributions in manifolds. Chemical Engineering Science 10 (1–2):112–24. doi: 10.1016/0009-2509(59)80030-0.
  • Chang, H.-C., M. Saucier, and J. M. Calo. 1983. Design criterion for radial flow fixed-bed reactors. AIChE Journal 29 (6):1039–41. doi: 10.1002/aic.690290624.
  • Dixon, A. G. 2021. Particle-resolved CFD simulation of fixed bed pressure drop at moderate to high reynolds number. Powder Technology 385:69–82. doi: 10.1016/j.powtec.2021.02.052.
  • Dixon, A. G., and Y. Wu. 2020. Partial oxidation of o-xylene to phthalic anhydride in a fixed bed reactor with axial thermowells. Chemical Engineering Research and Design 159:125–37. doi: 10.1016/j.cherd.2020.03.027.
  • Duan, J., L. Fang, S. Gao, Z. Zhang, and W. Wang. 2019. Numerical simulation and structural optimization of multi-compartment fluidized bed reactor for biomass fast pyrolysis. Chemical Engineering and Processing - Process Intensification 140:114–26. doi: 10.1016/j.cep.2019.05.004.
  • Elif, C. S., and T. E. Ceren. 2022. Adsorptive removal of antipsychotic drug by carbon nanofibers in a batch and fixed bed column system. Particulate Science and Technology 40 (7):899–910. doi: 10.1080/02726351.2021.2025178.
  • Eppala, V. C. R., M. M. Varghese, and T. R. Vakamalla. 2023. Effect of particle shape on the hydrodynamics of gas-solid fluidized bed. Chemical Engineering Research and Design 189:461–73. doi: 10.1016/j.cherd.2022.11.025.
  • Farsi, M., A. Jahanmiri, and M. R. Rahimpour. 2014. Optimal conditions of isobutane dehydrogenation in radial flow moving bed hydrogen-permselective membrane reactors to enhance isobutene and hydrogen production. Chemical Engineering and Processing: Process Intensification 75:126–33. doi: 10.1016/j.cep.2013.11.006.
  • Gilmurakhmanov, B. S., P. V. Urtyakov, M. V. Nazarov, O. S. Roshchina, and A. A. Lamberov. 2019. Dehydrogenation of methylbutenes to isoprene: A comparative mathematical analysis of the dehydrogenation of methylbutenes to isoprene in axial and radial reactors. Catalysis in Industry 11 (2):162–7. doi: 10.1134/S2070050419020053.
  • Golman, B., and K. Shinohara. 1999. Comparison of moving bed reactors for chemical vapor deposition coating of fine particles. Advanced Powder Technology 10 (1):65–76. doi: 10.1016/S0921-8831(08)60457-4.
  • Huang, F., M. Q. Wu, P. Du, and D. Y. Jin. 1993. A study on flow through annular packed-bed in cylindrical chamber with a passage of variable sections chamber with a passage of variable sections. Journal of Hydrodynamics(A) 8(1):107–114.
  • Jiang, H. B., and Y. H. Liang. 2017. Flow field simulation on double-ring radial flow reactor. China Petroleum Processing & Petrochemical Technology 19 (2):104–13.
  • Lau, P., C.-R. Arlt, M. Potthoff, and M. Kind. 2017. Particle exchange in horizontal two-compartment fluidized beds – cfd simulation and experimental validation. Advanced Powder Technology 28 (2):543–52. doi: 10.1016/j.apt.2016.10.023.
  • Li, Y., M. Wang, X. Cao, and Z. Geng. 2020. Particle resolved cfd simulation on vapor-phase synthesis of vinyl acetate from ethylene in fixed-bed reactor. Korean Journal of Chemical Engineering 37 (5):839–49. doi: 10.1007/s11814-020-0500-y.
  • Li, R., and Z. Zhu. 2012. Investigations on hydrodynamics of multilayer π-type radial flow reactors. Asia-Pacific Journal of Chemical Engineering 7 (4):517–27. doi: 10.1002/apj.601.
  • Luzi, C. D., N. J. Mariani, D. A. Asensio, O. M. Martinez, and G. F. Barreto. 2019. Estimation of the radial distribution of axial velocities in fixed beds of spherical packing. Chemical Engineering Research and Design 150:153–68. doi: 10.1016/j.cherd.2019.06.031.
  • Lv, S., F. Jiang, G. Qi, X. Chen, and X. Li. 2020. Pressure drop of liquid–solid two-phase flow in a down-flow circulating fluidized bed. Powder Technology 375:136–45. doi: 10.1016/j.powtec.2020.07.077.
  • Pan, H., X.-Z. Chen, X.-F. Liang, L.-T. Zhu, and Z.-H. Luo. 2016. CFD simulations of gas–liquid–solid flow in fluidized bed reactors - a review. Powder Technology 299:235–58. doi: 10.1016/j.powtec.2016.05.024.
  • Ponzi, P. R., and L. A. Kaye. 1979. Effect of flow maldistribution on conversion and selectivity in radial flow fixed-bed reactors. AIChE Journal 25 (1):100–8. doi: 10.1002/aic.690250111.
  • Sahoo, P., and A. Sahoo. 2017. Computational and experimental studies on bed dynamics of a gas–solid fluidized bed using Geldart-A particle: A comparison. Particulate Science and Technology 35 (6):688–98. doi: 10.1080/02726351.2016.1194348.
  • Song, X., Z. Wang, Y. Jin, and M. Gong. 1993. Investigations on hydrodynamics of radial flow moving bed reactors. Chemical Engineering & Technology 16 (6):383–8. doi: 10.1002/ceat.270160605.
  • Tang, Z., M. Xu, and J. Zhang. 2016. Simulation and analysis on gas flow distribution in radial flow air adsorber. Journal of Tianjin University(Science and Technology) 49 (3):305–13.
  • Wang, H., and X. Gu. 2018. Hydrodynamic characteristics of radial flow reactor for oxidative dehydrogenation of butane to butadiene. Chemical Engineering (China 46 (3):36–40.
  • Wang, H. Y., Y. S. Liu, C. Z. Zhang, X. Yang,and J. W. Chen. 2019. Study on variable mass flow laws in π-shaped centripetal radial flow adsorber. CIESC Journal 70 (9):3385–95.
  • Wei, H. S., R. J. Wang, D. W. Wang, T. H. Wu, Y. Liu, and S. F. Zhang. 2020. Local momentum exchange coefficient in distribution channel of centrifugal radial fixed bed. The Chinese Journal of Process Engineering 20 (12):1406–15.
  • Wu, Z., X. Liu, and L. Huang. 2013. Numerical Simulation of Radial Flow Moving-bed Reactor Using CFD- DEM Coupling Approach. China Powder Science and Technology 19 (3):9–13.
  • Wu, T. H. 2021. Simulation of flow field uniformity in the particle bed of a radial bed. Hebei University of Technology.
  • Xing, Y., C. Zhang, H. Wang, Z. Li, and Y. Liu. 2022. Airflow distributions in a z type centripetal radial flow reactor: Effects of opening strategy and opening rate. Processes 10 (7):1250. doi: 10.3390/pr10071250.
  • Xu, Z. G., F. Yu, R. J. Li, Y. Q. Wu, Z. B. Zhu, and C. F. Zhang. 2003. Variable-mass flow through the vertical perforated channels. The Chinese Journal of Process Engineering 3(1):1–7.
  • Xuan, W., and J. Zhang. 2018. Comparison of axial and radial water gas shift reactors based on cfd simulation. Journal of Chemical Engineering of Japan 51 (12):937–44. doi: 10.1252/jcej.17we369.
  • Zhang, X., J. Lu, L. Qiu, X. Zhang, and X. Wang. 2013. A mathematical model for designing optimal shape for the cone used in z-flow type radial flow adsorbers. Chinese Journal of Chemical Engineering 21 (5):494–9. doi: 10.1016/S1004-9541(13)60527-3.
  • Zhang, R., Y. Wang, X. Yu, Y. Shen, Z. Tang, W. Li, and D. Zhang. 2022. Flow characteristics of air separation in vpsa process with radial flow adsorber. Powder Technology 407:117672. doi: 10.1016/j.powtec.2022.117672.
  • Zhang, C. F., Z. B. Zhu, M. S. Xu, and B. C. Zhu. 1979. Study on the design of uniform flow distribution in radial reactor. Petroleum Processing and Petrochemicals (5):6–22.
  • Zhang, C. F., Z. B. Zhu, M. S. Xu, and B. C. Zhu. 1980. Study on the design of uniform flow distribution in radial reactor(ⅱ). Chemical Engineering(China) (2):82–9 + 35.
  • Zhapbasbayev, U. K., G. I. Ramazanova, and O. B. Kenzhaliev. 2015. Modelling of turbulent flow in a radial reactor with fixed bed. Thermophysics and Aeromechanics 22 (2):229–43. doi: 10.1134/S0869864315020092.

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