A Numerical Simulation Study on the Kinetics of Asphaltene Particle Flocculation in a Two-dimensional Shear Flow

سال انتشار: 1398
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 441

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شناسه ملی سند علمی:

JR_IJOGST-8-2_004

تاریخ نمایه سازی: 22 تیر 1398

چکیده مقاله:

In the current study, the kinetics of asphaltene particle flocculation is investigated under a shear flow through numerical simulation. The discrete element method (DEM) is coupled with computational fluid dynamics (CFD) to model the agglomeration and fragmentation processes. In addition, a coalescence model is proposed to consider the attachment of colliding particles. The changes in mean asphaltene floc size, the particle size distribution (PSD) of asphaltene flocs over simulation time, and the average fractal dimension are presented. Moreover, the effect of fluid velocity on the kinetics of asphaltene flocculation is examined. The mean asphaltene floc size increases exponentially at first, and then the growth slows; finally, it ceases due to the establishment of a dynamic equilibrium between the agglomeration and fragmentation processes. As expected, asphaltene PSD’s move from fine to coarse sizes during the simulation. Log-normal distribution matches the PSDs best, which is in agreement with the nature of asphaltene. As fluid velocity increases, the dynamic equilibrium is attained more rapidly at a smaller mean floc size and higher average fractal dimension; furthermore, PSDs shift to smaller asphaltene floc sizes. The obtained average fractal dimensions of the asphaltene flocs are in the range of 1.65 to 1.74, which is compatible with the values reported in the literature. Eventually, a semi-analytical model is utilized to fit the simulation results. It is found out that the semi-theoretical model is capable of predicting the evolution of asphaltene particle size appropriately.

نویسندگان

Hadi Bagherzadeh

Ph.D. Candidate, Petroleum Engineering Department, Amirkabir University of Technology, Tehran, Iran

Zahra Mansourpour

Assistant Professor, Chemical Engineering Department, University of Tehran, Tehran, Iran

Bahram Dabir

Professor, Petroleum Engineering Department, Amirkabir University of Technology, Tehran, Iran

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  • Anderson, T. B. and Jackson, R., Fluid Mechanical Description of ...
  • Brown, D. L. and Glatz, C. E., Aggregate Breakage in ...
  • Chimmili, S., Doraiswamy, D. and Gupta, R. K., Shear-induced Agglomeration ...
  • Cundall, P. A. and Strack, O. D., Discrete Numerical Model ...
  • Doraiswamy, D., Gupta, R. K., and Chimmili, S., Particle Agglomeration ...
  • Dabir, B., Nematy, M., and Mehrabi, A.R., Asphalt Flocculation and ...
  • Daneshvar, S., Asphaltene Flocculation in Diluted Bitumen, M.S. Thesis, University ...
  • Ergun, S., Fluid Flow through Packed Columns, Chem, Eng. Prog., ...
  • Eskin, D., Ratulowski, J., Akbarzadeh, K., and Pan, S., Modelling ...
  • Eyssautier, J., Levitz, P., and Espinat, D., Insight into Asphaltene ...
  • Fallahnejad G. and Kharrat R., Asphaltene Deposition Modeling during Natural ...
  • Fenistein, D., Barré, L., and Broseta, D., Viscosimetric and Neutron ...
  • Ferworn, K. A., Svrcek, W. Y., and Mehrotra, A. K., ...
  • Haghshenasfard M. and Hooman K., CFD Modeling of Asphaltene Deposition ...
  • Haji-Akbari, N., Masirisuk, P., Hoepfner, M. P., and Fogler, H. ...
  • Headen, T. F., Boek, E. S., Stellbrink, J., and Scheven, ...
  • Henry, C., Minier, J. P., Pozorski, J., and Lefèvre, G., ...
  • Hoepfner, M. P., Vilas Boas Favero, C., Haji-Akbari, N., and ...
  • Hogg, R., Flocculation Phenomena in Fine Particle Dispersions, Ceramic Powder ...
  • Hoomans, B. P. B., Kuipers, J. A .M., Briels, W. ...
  • Jamialahmadi M., Soltani B., Müller-Steinhagen H., and Rashtchian D., Measurement ...
  • Khoshandam, A. and Alamdari, A., Kinetics of Asphaltene Precipitation in ...
  • Kokal, S. L. and Sayegh, S. G., Asphaltenes: The Cholesterol ...
  • Kruggel-Emden, H., Rickelt, S., Wirtz, S., and Scherer, V. A ...
  • Levich, V. G., Physicochemical Hydrodynamics, Prentice-Hall, 1962. ...
  • Maqbool, T., Raha, S., Hoepfner, M. P., and Fogler, H. ...
  • Mason, T. G. and Lin, M. Y., Time-resolved Small Angle ...
  • Mohammadi, S., Rashidi, F., Mousavi-Dehghani, S. A., and Ghazanfari, M. ...
  • Munjiza, A. and Andrews, K. R. F., NBS Contact Detection ...
  • Patankar, S. V., Numerical Heat Transfer and Fluid Flow, Hemisphere ...
  • Rahmani, N. H. G., Dabros, T., and Masliyah, J. H., ...
  • of Colloid and Interface Science - Elsevier, Vol. 285, p. ...
  • Rahmani, N. H. G., Dabros, T., and Masliyah, J. H., ...
  • Rahmani, N. H. G., Masliyah, J., H., Dabros, T., Characterization ...
  • Ramirez-Jaramillo E., Lira-Galeana C., and Manero O., Modeling Asphaltene Deposition ...
  • Rastegari, K., Svrcek, W. Y., and Yarranton, H. W., Kinetics ...
  • Salimi F., Ayatollahi S., and Vafaie Seftie M., An Experimental ...
  • Savvidis, T. G., Fenistein, D., Barr, L., and Bhar, E., ...
  • Schutte, K. C. J., Portela, L. M., Twerda, A., and ...
  • Seyyedbagheri, H. and Mirzayi, B., Eulerian Model to Predict Asphaltene ...
  • Sheu, E., Long, Y., and Hamza, H., Asphaltene Self-association and ...
  • Shirdel M., Paes D., Ribeiro P., and Sepehrnoori K., Evaluation ...
  • Solaimany-Nazar, A. R. and Rahimi, H., Dynamic Determination of Asphaltene ...
  • Solaimany-Nazar, A. R. and Rahimi, H., Investigation on Agglomeration-fragmentation Processes ...
  • Wen, C. Y. and Yu, Y. H., Mechanics of Fluidization, ...
  • Xu, B. H. and Yu, A. B., Numerical Simulation of ...
  • Zahnow, J. C., Maerz, J., and Feudel, U., Particle-based Modeling ...
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