Modeling wax deposition in pipelines

被引:48
|
作者
Ramirez-Jaramillo, E
Lira-Galeana, C
Manero, O
机构
[1] Inst Mexicano Petr, Branch R&D Deep Wate E&P, Mexico City 07730, DF, Mexico
[2] Univ Nacl Autonoma Mexico, Mat Res Inst, Mexico City, DF, Mexico
关键词
wax deposition; modelling; multicomponent mixture; non-Newtonian fluids;
D O I
10.1081/LFT-120038726
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
A multicomponent liquid-wax hydrodynamic model that incorporates phase equilibria and a full non-Newtonian behavior is proposed. In this model, molecular diffusion through the boundary layer induced by a temperature gradient between the liquid and the exterior pipe wall is assumed to be the dominant mechanism for deposition. Numerical solutions to the conservation equations for Newtonian and non-Newtonian flow regimes in a model pipe are presented, and results on calculated radial mass flux and wax deposition profiles as a function of time and position in a vertical pipeline are discussed in detail. The results are compared with predictions from a previous model developed by Svendsen (Svendsen, J. A. (1993). Mathematical modeling of wax deposition in oil pipeline systems. AIChE J. 39(8):1377-1388.) and with experimental flow data for a binary mixture reported by Cordoba and Schall (Cordoba A. J., Schall C. A. Application of a heat method to determine wax deposition in a hydrocarbon binary mixture. Fuel 2001 80:1285-1291). Good agreement in both cases is found.
引用
收藏
页码:821 / 861
页数:41
相关论文
共 50 条
  • [21] Mathematical formulation and numerical modeling of wax deposition in pipelines from enthalpy-porosity approach and irreversible thermodynamics
    Banki, R.
    Hoteit, H.
    Firoozabadi, A.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2008, 51 (13-14) : 3387 - 3398
  • [22] Modeling asphaltene deposition in production pipelines
    Ramirez-Jaramillo, E.
    Lira-Galeana, C.
    Manero, O.
    ENERGY & FUELS, 2006, 20 (03) : 1184 - 1196
  • [23] Feasibility study for wax deposition imaging in oil pipelines by PGNAA technique
    Cheng, Can
    Jia, Wenbao
    Hei, Daqian
    Wei, Zhiyong
    Wang, Hongtao
    APPLIED RADIATION AND ISOTOPES, 2017, 128 : 171 - 174
  • [24] Role of Shearing Dispersion and Stripping in Wax Deposition in Crude Oil Pipelines
    Wang, Zhihua
    Xu, Yunfei
    Zhao, Yi
    Li, Zhimin
    Liu, Yang
    Hong, Jiajun
    ENERGIES, 2019, 12 (22)
  • [25] Mathematical modelling of wax deposition in crude oil pipelines (comparative study)
    Kok, MV
    Saracoglu, RO
    PETROLEUM SCIENCE AND TECHNOLOGY, 2000, 18 (9-10) : 1121 - 1145
  • [26] The importance of wax-deposition measurements in the simulation and design of subsea pipelines
    Akbarzadeh K.
    Ratulowski J.
    Eskin D.
    Davies T.
    SPE Projects, Facilities and Construction, 2010, 5 (02): : 49 - 57
  • [27] A critical review of the Modeling of wax deposition mechanisms
    Azevedo, LFA
    Teixeira, AM
    PETROLEUM SCIENCE AND TECHNOLOGY, 2003, 21 (3-4) : 393 - 408
  • [28] Effect of pour point depressant on wax deposition and drag reduction in horizontal pipelines
    Banerjee, Shirsendu
    Kumar, Ravindra
    Akhtar, Afzal
    Bairagi, Rajesh
    Mandal, Ajay
    Naiya, Tarun Kumar
    PETROLEUM SCIENCE AND TECHNOLOGY, 2017, 35 (06) : 561 - 569
  • [30] Study of the causes for wax deposition under the operating conditions of main oil pipelines
    Sunagatullin, Rustam Z.
    Karimov, Rinat M.
    Tashbulatov, Radmir R.
    Mastobaev, Boris N.
    NAUKA I TEHNOLOGII TRUBOPROVODNOGO TRANSPORTA NEFTI I NEFTEPRODUKTOV-SCIENCE & TECHNOLOGIES-OIL AND OIL PRODUCTS PIPELINE TRANSPORTATION, 2020, 10 (06): : 610 - 619