SIMULATION OF HYDROABRASIVE EROSION PROCESS ELEMENTS OF A DOWNHOLE JET PUMP
DOI:
https://doi.org/10.18372/0370-2197.4(93).16284Keywords:
jet pump, hydroabrasive erosion, numerical modeling, parametric modeling, three-dimensional grid model, variable grid geometry, , turbulence modelsAbstract
The reliability of downhole ejection systems significantly depends on the accuracy of forecasting and the effectiveness of preventing the occurrence of hydroabrasive erosion in the flow part of the jet pump. The latest method of forming the working grid of its flowing part by initializing mosaic technology was used to model the process of wear of the jet pump, which allowed to reduce the time spent on calculation and increase the accuracy of modeling processes related to erosion simulation in the downhole jet pump. The nature of the change of the geometric model of the flow part of the jet pump under the action of hydroabrasive erosion is established. The deformed geometry of the segments of the working nozzle and the mixing chamber, which was formed as a result of prolonged exposure to abrasive particles transported by the working and injected flow, is analyzed. The model of the trajectory of the abrasive solid particles in the volume of the jet pump fluid is presented, which allowed to determine the rate of formation of concentrators of erosion influence in its flowing part.
References
Мельников А.П. Исследование влияния эксцентрического и углового смещения рабочей насадки струйного насоса на его работу при бурении скважин / А.П.Мельников, Н.А.Буглов // Ве-стник ИрГТУ. –2016. – № 6. – С. 50–57. DOI: 10.21285/1814-3520-2016-6-50-57.
Паневник А.В., Исследование влияния эксплуатационных факторов на износ элементов скважинных струйных насосов / А.В.Паневник, Д.А.Паневник // «Молодий вчений». – 2018. –№ 11 (63). – С.377–381.
Zhao H. A PIV Experiment of Water Jet Through a Single Nozzle at Bottom Hole / H. Zhao, Z. Huang, H. Shi, Z. Chen, Z. Gu, F. Gao // Proceedings of the 48th National Conference on Fluid Mechanics and Fluid Power (FMFP). December 27-29, 2021, BITS Pilani, Pilani Campus, RJ, India. Easy Chair Preprint № 6570. 7 р. https://easychair.org/publications/preprint/WP1Q.
Meakhail T.A. A Study of the Effect of Nozzle Spacing and Driving Pressure on the Water Jet Pump Performance / T.A. Meakhail, I.R. Teaima // International Journal of Engineering Science and Innovative Technology (IJESIT). – 2013. – Volume 2. – Issue 5. – P. 373 – 382. https://www.ijesit.com › IJESIT201305_51.
Бутенко А.Г. Повышение эффективности струйного насоса при малых коэффи-циентах эжекции / А.Г.Бутенко, С.Ю. Смык // Энергетика. Известия высших учебных заведений и энергетических объединений СНГ. – 2015. – № 2. – С. 80-87. http://dspace.opu.ua/jspui/handle/123456789/8886.
Nedelcuţ F. ANSYS flowizard used to optimize an water ejector / F. Nedelcut, N. Iacob, C.Cuciuc // Journal of Industrial Design and Engineering Graphics. – 2012. – Volume 7. – Issue 2. – P. 19–22.
https://www.researchgate.net/publication/308349408.
Уразаков К.Р. Моделирование характеристик струйного насоса / К.Р. Уразаков, И.А. Мухин, Р.И. Вахитова // Электротехнические и информационные комплексы и си-стемы. – 2015. – № 4. – Т. 11. – С. 41–50. https://cyberleninka.ru.
Чабурко П.С. Численное моделирование течения жидкости в струйном насосе / П.С. Чабурко, В.О. Ломакин // Russian Internet Journal of Industrial Engineering. – 2014. – Vol. 2. – no. 3. С. 55–58. http://www.indust-engineering.ru.
Song X.-G. Performance comparison and erosion prediction of jet pumps by using a numerical method / X.-G. S. Song, J.-H. Park, S.-G. Kim, Y.-C. Park // Mathematical and Computer Modelling. – 2013. – № 57. – P. 245 – 253.http://dx.doi.org/10.1016/j.mcm.2011.06.040.
Downloads
Published
How to Cite
Issue
Section
License
The scientific journal adheres to the principles of Open Access and provides free, immediate, and permanent access to all published materials without financial, technical, or legal barriers for readers.
All articles are published in Open Access under the Creative Commons Attribution 4.0 International (CC BY 4.0) license.
Copyright
Authors who publish their works in the journal “Problems of Friction and Wear”:
-
retain the copyright to their publications;
-
grant the journal the right of first publication of the article;
-
agree to the distribution of their materials under the CC BY 4.0 license;
-
have the right to reuse, archive, and distribute their works (including in institutional and subject repositories), provided that proper reference is made to the original publication in the journal.



