Numerical study of interacting vapor bubble trains in microchannel flow boiling finds frequency rises and growth falls with higher vapor-liquid volume ratio, while growth rises with heat flux or lower latent heat, plus upstream vaporization drives downstream expansion and periodic fluctuations in wa
Valeh-e Sheyda, M
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Dynamics of vapor bubble train in flow boiling heat transfer in microchannels
Numerical study of interacting vapor bubble trains in microchannel flow boiling finds frequency rises and growth falls with higher vapor-liquid volume ratio, while growth rises with heat flux or lower latent heat, plus upstream vaporization drives downstream expansion and periodic fluctuations in wa