2020
DOI: 10.1016/j.apm.2020.04.004
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Transient cavitating flow structure and acoustic analysis of a hydrofoil with whalelike wavy leading edge

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Cited by 59 publications
(9 citation statements)
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“…Moreover, at the highest angle of attack (24 • ) the pressure pulses on the suction side were reduced by almost 60% with respect to the basic configuration (Li et al, 2021). As also observed by an analogous numerical study based on LES, the reduction of the scales of the cloud cavitation in correspondence of the trailing edge was ascribed to the effect of the vortex pairs (Li et al, 2020).…”
Section: Introductionsupporting
confidence: 65%
“…Moreover, at the highest angle of attack (24 • ) the pressure pulses on the suction side were reduced by almost 60% with respect to the basic configuration (Li et al, 2021). As also observed by an analogous numerical study based on LES, the reduction of the scales of the cloud cavitation in correspondence of the trailing edge was ascribed to the effect of the vortex pairs (Li et al, 2020).…”
Section: Introductionsupporting
confidence: 65%
“…Since the receiver locations are far from the source surface S , can be expressed as follows (Eq. (29) ): where and represent the average retarded time and the average distance of all noise sources on the surface S , respectively, and V represents the cavity volume in the source surface S [51] . Thus, is proportional to the second derivative of the cavity volume.…”
Section: Model Formulationmentioning
confidence: 99%
“…The centrifugal pump simulation results by Dong et al 30 showed that as the axial width of pump side chambers increases, the pressure increases, but the radial pressure difference decreases. The transient flow structures of a hydrofoil with a wavy leading edge were numerically visualized by Li et al 31 Wei et al 32 conducted the large eddy simulation of a centrifugal fan with stepped tongue volutes. They found that the double-stepped tongue contributes to the pressure rise.…”
Section: Introductionmentioning
confidence: 99%