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Research Article

Simulation of oil flow in a heat traced piping segment – COMSOL versus analytical trends

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References

  • Aspen Technology Inc. 2004. Aspen HYSYS User Guide. chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://sites.ualberta.ca/CMENG/che312/F06ChE416/HysysDocs/AspenHYSYSUserGuide.pdf.
  • Bechtel, T. 2003. Laminar pipeline flow of wastewater sludge: Computational fluid dynamics approach. Journal of Hydraulic Engineering 129 (2):153–8. doi:10.1061/(ASCE)0733-9429(2003)129:2(153).
  • Bhatti, M. M., H. F. Öztop, and R. Ellahi. 2022. Study of the magnetized hybrid nanofluid flow through a flat elastic surface with applications in solar energy. Materials 15 (21):7507. doi:10.3390/ma15217507.
  • Bird, R. B., W. E. Stewart, and E. N. Lightfoot. 2002. Transport phenomena. 2nd ed. John Wiley & Sons, New York
  • Chen, W., Z. Zhao, and C. Yin. 2010. The interaction of waxes with pour point depressants. Fuel 89 (5):1127–32. doi:10.1016/j.fuel.2009.12.005.
  • COMSOL. 2022a. Modeling pipe systems flow with COMSOL multiphysics. https://www.comsol.com/video/modeling-pipe-systems-flow-with-comsol-multiphysics.
  • COMSOL. 2022b. Performing a parametric sweep study in COMSOL multiphysics. https://www.comsol.com/video/performing-parametric-sweep-study-comsol-multiphysics.
  • Gao, Y., and K. Li. 2012. New models for calculating the viscosity of mixed oil. Fuel 95:431–7. doi:10.1016/j.fuel.2011.12.043.
  • Ik Im, S., S. Shin, J. W. Park, H. J. Yoon, K. S. Go, N. S. Nho, and K. B. Lee. 2018. Selective separation of solvent from deasphalted oil using CO2 for heavy oil upgrading process based on solvent deasphalting. Chemical Engineering Journal 331:389–94. doi:10.1016/j.cej.2017.08.094.
  • Jafari, A., M. Hasani, M. Hosseini, and R. Gharibshahi. 2020. Application of CFD technique to simulate enhanced oil recovery processes: Current status and future opportunities. Petroleum Science 17 (2):434–56. doi:10.1007/s12182-019-00363-7.
  • Jing, J., N. Duan, K. Dai, J. Tan, P. Jing, Y. Li, J. Sun, and Y. Zhou. 2014. Investigation on drag characteristics of heavy oil flowing through horizontal pipe under the action of aqueous foam. Journal of Petroleum Science and Engineering 124:83–93. doi:10.1016/j.petrol.2014.10.018.
  • Joonaki, E., A. Hassanpouryouzband, R. Burgass, A. Hase, and B. Tohidi. 2020. Effects of waxes and the related chemicals on asphaltene aggregation and deposition phenomena: experimental and modeling studies. ACS Omega 5 (13):7124–34. doi:10.1021/acsomega.9b03460.
  • Mclean, J. D., and P. K. Kilpatrick. 1997. Effects of asphaltene solvency on stability of water-in-crude-oil emulsions. Journal of Colloid and Interface Science 189 (2): 242–53. doi: 10.1006/jcis.1997.4807
  • Sánchez-Lemus, M. C., F. Schoeggl, S. D. Taylor, and H. W. Yarranton. 2016. Physical properties of heavy oil distillation cuts. Fuel 180:457–72. doi:10.1016/j.fuel.2016.04.059.
  • Machado, A. L., and E. F. Lucas. 2002. Influence of ethylene-co-vinyl acetate copolymers on the flow properties of wax synthetic systems. Journal of Applied Polymer Science 85 (6):1337–48. doi:10.1002/app.10761.
  • Martínez-Palou, R., M. D. L. Mosqueira, B. Zapata-Rendón, E. Mar-Juárez, C. Bernal Huicochea, J. de la Cruz Clavel-López, and J. Aburto. 2011. Transportation of heavy and extra-heavy crude oil by pipeline: A review. Journal of Petroleum Science and Engineering 75 (3-4):274–82. doi:10.1016/j.petrol.2010.11.020.
  • Nguyen, H., and T. Hoang. 2017. Numerical simulation of laminar flow through a pipe using COMSOL multiphysics. International Journal of Scientific & Engineering Research 8 (6):290–5. http://www.ijser.org.
  • Spiecker, P. M., K. L. Gawrys, C. B. Trail, and P. K. Kilpatrick. 2003. Effects of petroleum resins on asphaltene aggregation and water-in-oil emulsion formation. Colloids and Surfaces A: Physicochemical and Engineering Aspects 220 (1-3):9–27. doi:10.1016/S0927-7757(03)00079-7.
  • Peng, D.-Y., and D. B. Robinson. 1976. A new two-constant equation of state. Industrial & Engineering Chemistry Fundamentals 15 (1):59–64. doi:10.1021/i160057a011.
  • Pontes, P. C., K. Chen, C. P. Naveira-Cotta, J. M. Costa Junior, C. P. Tostado, and J. N. N. Quaresma. 2016. Mass transfer simulation of biodiesel synthesis in microreactors. Computers & Chemical Engineering 93:36–51. doi:10.1016/j.compchemeng.2016.05.010.
  • Santos, L. A., D. C. Ribeiro, and O. J. Romero. 2020. Heavy oil transportation through steam heating: An analytical and numerical approach. Journal of Petroleum Science and Engineering 195:107932. doi:10.1016/j.petrol.2020.107932.
  • Turgay, M. B., and A. G. Yazıcıoğlu. 2018. Numerical simulation of fluid flow and heat transfer in a trapezoidal microchannel with COMSOL multiphysics: A case study. Numerical Heat Transfer, Part A: Applications 73 (5):332–46. doi:10.1080/10407782.2017.1420302.
  • Hasan, S., M. T. Ghannam, and N. Esmail. 2010. Heavy crude oil viscosity reduction and rheology for pipeline transportation. Fuel 89 (5):1095–100. doi:10.1016/j.fuel.2009.12.021.
  • Wei, B. 2015. Recent advances on mitigating wax problem using polymeric wax crystal modifier. Journal of Petroleum Exploration and Production Technology 5 (4):391–401. doi:10.1007/s13202-014-0146-6.
  • Xu, P., L. He, D. Yang, S. Zhou, J. Wang, and D. Yang. 2021. Blocking characteristics of high water-cut crude oil in low-temperature gathering and transportation pipeline. Chemical Engineering Research and Design 173:224–33. doi:10.1016/j.cherd.2021.07.019.
  • Yao, Z., Y. Zhang, Y. Zheng, C. Xing, and Y. Hu. 2022. Enhance flows of waxy crude oil in offshore petroleum pipeline: A review. Journal of Petroleum Science and Engineering 208:109530. doi:10.1016/j.petrol.2021.109530.
  • Zambrano, H., L. D. G. Sigalotti, J. Klapp, F. Peña-Polo, and A. Bencomo. 2017. Heavy oil slurry transportation through horizontal pipelines: Experiments and CFD simulations. International Journal of Multiphase Flow 91:130–41. doi:10.1016/j.ijmultiphaseflow.2016.04.013.
  • Zhang, H.-Q., C. Sarica, and E. Pereyra. 2012. Review of high-viscosity oil multiphase pipe flow. Energy & Fuels 26 (7):3979–85. doi:10.1021/ef300179s.

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