期刊文献+

Using S-statistic for investigating the effect of temperature on hydrodynamics of gas-solid fluidization 被引量:1

Using S-statistic for investigating the effect of temperature on hydrodynamics of gas-solid fluidization
原文传递
导出
摘要 The influence of temperature on fluidization was investigated by a statistical chaotic attractor comparison test known as S-statistic, After calibration of the variables used in this method, the S-test was applied to the radioactive particle tracking (RPT) data obtained from a lab-scale fluidized bed. Experiments were performed with sand as fluidized particles and in temperatures from ambient up to 600 ℃ with superficial gas velocities of 0.29, 0.38 and 0.52 m/s. Considering the behavior of bubbles and comparing with frequency domain analysis, it was concluded that S-statistic is a reliable method for characterization of fluidization process behavior at different temperatures. The influence of temperature on fluidization was investigated by a statistical chaotic attractor comparison test known as S-statistic, After calibration of the variables used in this method, the S-test was applied to the radioactive particle tracking (RPT) data obtained from a lab-scale fluidized bed. Experiments were performed with sand as fluidized particles and in temperatures from ambient up to 600 ℃ with superficial gas velocities of 0.29, 0.38 and 0.52 m/s. Considering the behavior of bubbles and comparing with frequency domain analysis, it was concluded that S-statistic is a reliable method for characterization of fluidization process behavior at different temperatures.
出处 《Particuology》 SCIE EI CAS CSCD 2013年第3期288-293,共6页 颗粒学报(英文版)
基金 supported by Iranian National Science Foundation(Grant No.91001766)
关键词 S-statisticEffect of temperatureParticle trajectoryFluidized bed S-statisticEffect of temperatureParticle trajectoryFluidized bed
  • 相关文献

参考文献20

  • 1Abbasi, M., Sotudeh-Gharebagh, R., Mostoufi, N., Zarghami, R., & Mahjoob, M. ]. (2010). Nonin[rusive characterization of fluidized bed hydrodynamics using vibration signature analysis. AIChEJournal, 56, 59?-603.
  • 2Azizpour, H., Sotudeh-Gharebagh, R., Zarghami, R., Abbasi, M., Mostoufi, N., & Mahjoob, M. J. (2011). Characterization of gas-solid fluidized bedhydrodynamics by vibration signature analysis, lntemationalJournal of Multi- phase Flow, 37, 788-793.
  • 3Bai, D., Bi, H. 1"., & Grace, J. R. (1997). Chaotic behavior of fluidized beds based on pressure and voidage fluctuations. AIChEJournal, 43, 1357-1361.
  • 4Chaplin, C., Pugsley, T., & Winters, C. (2005). Monitoring the fluidized bed gran- ulation process based on S-statistic analysis of a pressure time series. AAP$ PharrnSciTech, 6(2), 198-201 (Article 29).
  • 5Cui, H., & Chaouki,J. (2004). Effects of temperature on local two-phase flow structure in bubbling and turbulent fluidized beds of FCC particles. Chemical Engineering Science, 59, 3413-3422.
  • 6Cui, H. Sauriol, P., & Chaouki, J. (2003). High temperature fluidized bed reactor: Measurements, hydrodynamics and simulation. Chemical Engineering Science, 58, 1071-1077.
  • 7Diks, C., van Zwet, W. R., Takens, F., & De Goede, J. (1996). Detecting differences between delay vector distributions. Physical Review E, 53, 2169-2176.
  • 8Doucet,J., Bertrand, F. & Chaouki,J. (2008). An extended radioactive particle tracking method for systems with irregular moving boundaries. Powder Technology, 181, 195-204.
  • 9Johnsson, F., Zijerveld, R. C., Schouten,]. C., van den Bleek, C. M., & Leckner, B. (2000). Characterization offluidization regimes by time-series analysis of pressure fluc- tuations, lnternational Journal of Multiphase Flow, 26, 663-715.
  • 10Larachi, F., Chaouki, J., & Kennedy, G. (1995). 3-D mapping of solids flow fields in multiphase reactor with RPT. AIChEJournal, 41,439-443.

同被引文献4

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部