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Mean flow and heat transfer quantities, turbulent fluxes and flow structures were analyzed.
Three dimensional mean flow and turbulence structure of pool-weir fishways were experimentally explored.
The mean flow and thermal fields are found to be in good agreement with the LES.
Expressions for the acoustic impedance under various mean flow and acoustic incidence configurations are developed.
The time-averaged flow properties, mean flow and turbulence, have been studied.
Mean flow and turbulence parameters have been measured using laser Doppler anemometer (LDA) in ultrasound reactor.
The distributions of exergy destruction due to mean flow and fluctuating motion viscous dissipations as well as to mean flow and fluctuating motion heat transfer irreversibility in radial and in axis directions are obtained.
The identification is performed by reconstructing the flow field using the mean flow and the second DMD mode.
The study sheds light on the combined effect of mean flow and geometric periodicity on sound phase speed.
A second-moment-closure turbulence model is applied to obtain accurate mean flow and turbulent mixing fields.
Three principal noise-producing regions are identified and their mean flow and turbulence characteristics classified from published data.
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