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Volume 42 Issue 3
Jun.  2021
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Zhou Junjie, Song Yuchen, Wang Dezhong, Yin Junlian. Experimental and Numerical Investigation of Cavitation-Induced Choked Flow in Venturi Tube      [J]. Nuclear Power Engineering, 2021, 42(3): 26-33. doi: 10.13832/j.jnpe.2021.03.0025
Citation: Zhou Junjie, Song Yuchen, Wang Dezhong, Yin Junlian. Experimental and Numerical Investigation of Cavitation-Induced Choked Flow in Venturi Tube      [J]. Nuclear Power Engineering, 2021, 42(3): 26-33. doi: 10.13832/j.jnpe.2021.03.0025

Experimental and Numerical Investigation of Cavitation-Induced Choked Flow in Venturi Tube      

doi: 10.13832/j.jnpe.2021.03.0025
  • Publish Date: 2021-06-15
  • When an over-flow condition occurs in a PWR nuclear power plant, the venturi flowmeter downstream of the make-up pump is required to form a cavitation-induced choked flow to protect the flowrate from exceeding the limit. Using the method of FLUENT numerical simulation and high-speed camera experiments, three different cavitation models were used to study the cavitation-induced choked flow phenomenon, cavitation development law and flow characteristics of the venturi tube. The results show that the ZGB cavitation model and the SST k-ω turbulence model can be used to simulate the cavitation flow limitation phenomenon of the venturi tube accurately. During the flow limitation, a periodic cavitation phenomenon will occur inside the Venturi tube. Under the action of the wall re-entrant jet, micro flow behaviors, such as small bubbles falling off, tail bubbles falling off and the whole vapor cavities falling off, will happen.

     

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