DOAJ Open Access 2022

Transient simulation and experiment validation on the opening and closing process of a ball valve

Yong Han Ling Zhou Ling Bai Peng Xue Wanning Lv +2 lainnya

Abstrak

The ball valve is an important device in the pipeline transportation system of nuclear power plants. Its operational stability and safety directly affect the normal working of nuclear power plants. In this study, the transient numerical simulation of the opening and closing process of a ball valve was conducted on the basis of the flow interruption capability experiment of the ball valve by using the moving mesh method and inlet and outlet variable boundary conditions. The flow rate and pressure difference with time of the opening and closing process of the ball valve were studied. The internal flow characteristics of the ball valve under different relative openings were analyzed in conjunction with the typical back-step flow structure. Results show that the transient numerical results agree well with the experimental results. The internal flow characteristics of the ball valve are similar at the same opening during opening and closing process. At small opening, the spool and outlet channels easily form a back-step flow structure. The disappearance and generation of backflow vortices during opening and closing occur at 85% opening and 75% opening, respectively. With the decrease in opening degree, the difference in vortex core area in the flow channel of the ball valve spool in the opening and closing process gradually appears. The research results provide some reference value for the design and optimization of ball valves.

Penulis (7)

Y

Yong Han

L

Ling Zhou

L

Ling Bai

P

Peng Xue

W

Wanning Lv

W

Weidong Shi

G

Gaoyang Huang

Format Sitasi

Han, Y., Zhou, L., Bai, L., Xue, P., Lv, W., Shi, W. et al. (2022). Transient simulation and experiment validation on the opening and closing process of a ball valve. https://doi.org/10.1016/j.net.2021.10.035

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Informasi Jurnal
Tahun Terbit
2022
Sumber Database
DOAJ
DOI
10.1016/j.net.2021.10.035
Akses
Open Access ✓