Study of the influence of dosing conditions of wax inhibitors on its efficiency using numerical simulation

被引:5
作者
Ilyushin, Pavel [1 ]
Vyatkin, Kirill [1 ]
Kozlov, Anton [1 ,2 ]
Andreev, Daniel [1 ]
机构
[1] Perm Natl Res Polytech Univ, Sci & Educ Ctr Geol & Dev Oil & Gas Fields, Perm, Russia
[2] Perm Natl Res Polytech Univ, Perm 614990, Russia
关键词
Laboratory experiment; wax inhibitor; numerical simulation; wax appearance temperature; nozzle; COLD FLOW; POUR-POINT; DEPOSITION; OIL; MIXTURES; TEMPERATURE;
D O I
10.1177/09544089231158191
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Wax deposition is one of the most common complications in oil production. The most promising method of preventing wax depositing is dosing of wax inhibitors. Based on the results of studies at the Cold Finger installation, it was found that dosing an inhibitor at a temperature below wax appearance temperature reduces the efficiency of the inhibitors. Based on large scale, numerical simulation was found that dosing by "drop" injection through the impulse tube leads to the accumulation of the inhibitor in the near-wall zone and low distribution over the cross section of the tubing. When dosing with a nozzle, the degree of distribution of the inhibitor increases and reaches the highest value at a nozzle diameter of 0.5 mm and a length 1.5 cm. The influence of flow rate on the degree of inhibitor distribution was also evaluated. It was found that with an increase in the flow rate to 45 m(3)/day, the distribution of inhibitor improves and reaches the highest value, after which it does not change. The results of the work performed will make it possible to scientifically substantiate the choice of the inhibitor dosing site in order to achieve the greatest efficiency and reduce the cost of servicing oil wells.
引用
收藏
页码:1700 / 1707
页数:8
相关论文
共 42 条
[1]  
Adeyanju OA., 2014, SPE NIG ANN INT C EX
[2]  
Al-Yaari M., 2011, SPE SAUDI ARABIA SEC
[3]   Phenomena, factors of wax deposition and its management strategies [J].
Syed Imran Ali ;
Shaine Mohammadali Lalji ;
Javed Haneef ;
Muhammad Arqam Khan ;
Mohsin Yousufi ;
Nimra Yousaf ;
Abdus Saboor .
Arabian Journal of Geosciences, 2022, 15 (2)
[4]   Modeling of Solids Deposition from "Waxy" Mixtures in "Hot Flow" and "Cold Flow" Regimes in a Pipeline Operating under Turbulent Flow [J].
Arumugam, Sridhar ;
Kasumu, Adebola S. ;
Mehrotra, Anil K. .
ENERGY & FUELS, 2013, 27 (11) :6477-6490
[5]   Solids Deposition during "Cold Flow" of Wax-Solvent Mixtures in a Flow-loop Apparatus with Heat Transfer [J].
Bidmus, Hamid O. ;
Mehrotra, Anil K. .
ENERGY & FUELS, 2009, 23 (5-6) :3184-3194
[6]   Investigation of inhibitors efficacy in wax deposition mitigation using a laboratory scale flow loop [J].
Chi, Yuandao ;
Daraboina, Nagu ;
Sarica, Cem .
AICHE JOURNAL, 2016, 62 (11) :4131-4139
[7]   Inhibiting asphaltene precipitation from Iranian crude oil using various dispersants: Experimental investigation through viscometry and thermodynamic modelling [J].
Dehaghani, Amir Hossein Saeedi ;
Badizad, Mohammad Hasan .
FLUID PHASE EQUILIBRIA, 2017, 442 :104-118
[8]   Experiments and modeling for investigating the effect of suspended wax crystals on deposition from 'waxy' mixtures under cold flow conditions [J].
Ehsani, Sina ;
Haj-Shafiei, Samira ;
Mehrotra, Anil K. .
FUEL, 2019, 243 :610-621
[9]  
Gilmanova AR., 2021, pat. RF for invention RU, Patent No. 2302513
[10]   Achieving cold flow conditions for 'waxy' mixtures with minimum solid deposition [J].
Haj-Shafiei, Samira ;
Mehrotra, Anil K. .
FUEL, 2019, 235 :1092-1099