The law of increasing pressure of the wave interaction process in some mixtures liquid containing vapour bubbles

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Authors

  • Nguyen Van Tuan (Corresponding Author) Faculty of Vehicle and Energy Engineering, Thai Nguyen University of Technology
  • Le Xuan Long Faculty of Vehicle and Energy Engineering, Thai Nguyen University of Technology

DOI:

https://doi.org/10.54939/1859-1043.j.mst.FEE.2024.198-204

Keywords:

Crude oil; Liquid nitrogen; Vapour bubbles; Short wave; Wave interaction; Phase; Pressure; Mixture.

Abstract

The phenomenon of increasing pressure of the wave interaction process has a great influence on the transportation of oil in the energy industry, in hydraulic transmission systems of automobiles and specialized machinery. This paper presents the phenomenon of pressure increase due to the interaction between short waves in the mixture in the crude oil-containing vapour bubbles and in the liquid nitrogen-containing vapour bubbles. The wave interaction process is described by the system of hydro-thermodynamic equations. The numerical method is applied to calculate, study, and analyze the influence of the volume concentration of the vapour phase in the mixture on the pressure increase of the wave interaction process. From the obtained results on the dependence of the mixture pressure on the volume concentration of the vapour phase at the time of wave interaction, the pressure increase law of the short waves interaction process in some mixtures liquid containing vapour bubbles as above will be determined.

References

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[3]. Nguyễn Văn Tuấn, Lê Thu Thủy, Nguyễn Thị Kim Thoa, “ Một số kết quả nghiên cứu về quy luật tăng áp suất của sóng phản xạ trên van đóng của ống chứa hỗn hợp chất lỏng - hơi”, Tạp chí Khoa học và Kỹ thuật, Đại học Thái Nguyên, tập 225, số 09, tr. 26 - 30, (2020).

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Published

06-12-2024

How to Cite

Nguyễn Văn Tuấn, and Lê Xuân Long. “The Law of Increasing Pressure of the Wave Interaction Process in Some Mixtures Liquid Containing Vapour Bubbles”. Journal of Military Science and Technology, no. FEE, Dec. 2024, pp. 198-04, doi:10.54939/1859-1043.j.mst.FEE.2024.198-204.

Issue

Section

Mechanics & Mechanical engineering