137
Views
0
CrossRef citations to date
0
Altmetric
Research Articles

Study on the relation of bubble behavior and bed density in gas–solid separation fluidized bed using electrical capacitance tomography

, , , &

References

  • Brereton, C. M. H., and J. R. Grace. 1993. Microstructural aspects of the behaviour of circulating fluidized beds. Chemical Engineering Science 48 (14):2565–72. doi:10.1016/0009-2509(93)80267-t.
  • Daizo, K., and O. Levenspiel. 1991. Fluidization engineering, 2nd ed. London: Butterworth-Heinemann.
  • Davidson, J. F., D. Harrison, and J. R. F. G. D. Carvalho. 1977. On the liquidlike behavior of fluidized beds. Annual Review of Fluid Mechanics 9 (1):55–86. doi:10.1146/annurev.fl.09.010177.000415.
  • Fu, Z. J. 2017. Research on the mechanism of two-phase distribution and density regulation of separating gas-solid fluidized bed. PhD diss., China University of Mining and Technology.
  • Geldart, D. 1973. Types of gas fluidization. Powder Technology 7 (5):285–92. doi:10.1016/0032-5910(73)80037-3.
  • Hao, Z. H., Z. Q. Cui, S. H. Yue, and H. X. Wang. 2018. Amplitude demodulation for electrical capacitance tomography based on singular value decomposition. The Review of Scientific Instruments 89 (7):074705. doi:10.1063/1.5038629.
  • He, Y. B. 2006. Research on techniques of dual-mode electrical resistance & capacitance tomography. PhD diss., Tianjin University.
  • Hernández-Jiménez, F., S. Sánchez-Delgado, A. Gómez-García, and A. Acosta-Iborra. 2011. Comparison between two-fluid model simulations and particle image analysis & velocimetry (PIV) results for a two-dimensional gas–solid fluidized bed. Chemical Engineering Science 66 (17):3753–72. doi:10.1016/j.ces.2011.04.026.
  • He, J. F., Y. K. Yao, G. Huang, and C. L. Duan. 2017. Intensification of the density stability in the air dense medium gas–solid fluidized bed based on a binary dense media. Chemical Engineering and Processing: Process Intensification 122:58–67. doi:10.1016/j.cep.2017.09.014.
  • Huang, Z. Y. 2002. Study on voidage measurement of gas-solid fluidized bed by using electrical capacitance tomography. Journal of Chemical Engineering of Chinese Universities 16 (05):490–5.
  • Li, G. F., X. B. Liu, C. L. Duan, Q. X. Liu, Y. M. Zhao, and R. Gupta. 2021. Study on the spatial and temporal distribution of the bed density in an air dense medium fluidized bed (ADMFB) based on the electrical capacitance tomography (ECT) measurement system. Powder Technology 393:659–69. doi:10.1016/j.powtec.2021.08.026.
  • Li, A. Q., S. H. Meng, K. Huang, W. Q. Yang, and M. Ye. 2022. On the concentration models in electrical capacitance tomography for gas-fluidized bed measurements. Chemical Engineering Journal 435:134989. doi:10.1016/j.cej.2022.134989.
  • Liu, S., Q. Chen, H. G. Wang, F. Jiang, I. Ismail, and W. Q. Yang. 2005. Electrical capacitance tomography for gas–solids flow measurement for circulating fluidized beds. Flow Measurement and Instrumentation 16 (2–3):135–44. doi:10.1016/j.flowmeasinst.2005.02.013.
  • Liu, X. B., X. C. Fan, Y. M. Zhao, C. L. Duan, and C. Y. Zhou. 2022. Particles movement behavior and apparent density in gas–solid fluidized bed as determined by an electronic dynamometer and electrical capacitance tomography. Chemical Engineering Journal 429:132463. doi:10.1016/j.cej.2021.132463.
  • Liu, C. G., S. Lu, J. F. He, Y. M. Zhao, and L. T. Zhu. 2019. A modified model for predicting bed density of air dense medium gas-solid fluidized bed (ADMGFB) using binary dense media. Powder Technology 355:363–71. doi:10.1016/j.powtec.2019.07.052.
  • Liu, S., R. S. Yan, H. G. Wang, F. Jiang, and X. Y. Dong. 2004. Applications of electrical capacitance tomography in two phase flow visualization. Journal of Thermal Science 13 (2):179–86. doi:10.1007/s11630-004-0029-0.
  • Ommen, J. R. V., S. Sasic, J. V. D. Schaaf, S. Gheorghiu, F. Johnsson, and M. O. Coppens. 2011. Time-series analysis of pressure fluctuations in gas–solid fluidized beds – a review. International Journal of Multiphase Flow 37 (5):403–28. doi:10.1016/j.ijmultiphaseflow.2010.12.007.
  • Patil, A. V., E. A. J. F. Peters, V. S. Sutkar, N. G. Deen, and J. A. M. Kuipers. 2015. A study of heat transfer in fluidized beds using an integrated DIA/PIV/IR technique. Chemical Engineering Journal 259:90–106. doi:10.1016/j.cej.2014.07.107.
  • Peng, L. H. 2011. A case study of the regularization methods for ill-posed inverse problems. Journal of Yunnan University of Nationalities (Natural Sciences Edition) 20 (02):79–85.
  • Penn, A., T. Tsuji, D. O. Brunner, C. M. Boyce, K. P. Pruessmann, and C. R. Müller. 2017. Real-time probing of granular dynamics with magnetic resonance. Science Advances 3 (9):e1701879. doi:10.1126/sciadv.1701879.
  • Sun, J. Y., and Y. Yan. 2016. Non-intrusive measurement and hydrodynamics characterization of gas–solid fluidized beds: a review. Measurement Science and Technology 27 (11):112001. doi:10.1088/0957-0233/27/11/112001.
  • Verma, V., J. T. Padding, N. G. Deen, J. A. M. Hans Kuipers, F. Barthel, M. Bieberle, M. Wagner, and U. Hampel. 2014. Bubble dynamics in a 3-D gas-solid fluidized bed using ultrafast electron beam x-ray tomography and two-fluid model. AIChE Journal 60 (5):1632–44. doi:10.1002/aic.14393.
  • Wang, H. G. 2004. Using electrical capacitance tomography for measuring the solids distribution in cyclone separator. Proceedings of the CSEE 24 (01):174–9. doi:10.13334/j.0258-8013.pcsee.2004.01.033.
  • Wang, C. X., J. Zhu, S. Barghi, and C. Y. Li. 2014. Axial and radial development of solids holdup in a high flux/density gas–solids circulating fluidized bed. Chemical Engineering Science 108:233–43. doi:10.1016/j.ces.2013.12.042.
  • White, R. B. 2002. Using electrical capacitance tomography to monitor gas voids in a packed bed of solids. Measurement Science and Technology 13 (12):1842–7. doi:10.1088/0957-0233/13/12/306.
  • Yan, X. K., X. H. Li, J. Li, L. J. Wang, H. J. Zhang, and Y. J. Cao. 2022. Investigating the gas holdup in a gas-liquid cyclonic flotation column through the electrical resistance tomography. International Journal of Coal Preparation and Utilization 42 (12):3601–17. doi:10.1080/19392699.2021.1984901.
  • Yang, W. Q. 2010. Design of electrical capacitance tomography sensors. Measurement Science and Technology 21 (4):042001. 042001. doi:10.1088/0957-0233/21/4/042001.
  • Yang, W. Q., and L. H. Peng. 2003. Image reconstruction algorithms for electrical capacitance tomography. Measurement Science and Technology 14 (1):R1–R13. doi:10.1088/0957-0233/14/1/201.
  • Yang, W. Q., D. M. Spink, T. A. York, and H. McCann. 1999. An image-reconstruction algorithm based on Landweber’s iteration method for electrical-capacitance tomography. Measurement Science and Technology 10 (11):1065–9. doi:10.1088/0957-0233/10/11/315.
  • Ye, J. M., H. G. Wang, and W. Q. Yang. 2014. A sparsity reconstruction algorithm for electrical capacitance tomography based on modified Landweber iteration. Measurement Science and Technology 25 (11):115402. doi:10.1088/0957-0233/25/11/115402.
  • Yorkey, T. J., J. G. Webster, and W. J. Tompkins. 1987. Comparing reconstruction algorithms for electrical impedance tomography. IEEE Transactions on Bio-Medical Engineering 34 (11):843–52. doi:10.1109/tbme.1987.326032.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.