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The gas phase fraction distribution was analysed.
Gas-filled cavity structures and local void fraction distribution in vessel with dual-impellers.
A linear relationship between probe signal and fraction distribution of solids in binary mixtures was found.
Temperature, CH4 mole fraction distribution, and flow field structure were obtained.
From the void fraction distribution, the boiling inception point was determined.
The simulated results of the volume fraction distribution has the same trend with measured observations.
An oscillatory radial void fraction distribution was then implemented in the 2D model.
Since the thermo-mechanical characteristics of an FGM depend on the volume fraction distribution, it is important to tailor appropriate volume fraction distribution that satisfies the desired performance requirements under given loading and boundary conditions.
The analysis requires a void volume fraction distribution acquired from ultra-small angle neutron scattering (USANS).
Acoustic sound characteristic and gas volume fraction distribution around the nozzle exit have been measured.
The effects played by volume fraction distribution, and initial geometric imperfections are studied.
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