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Development of a Tip-Leakage Flow Part 2: Comparison Between the Ducted and Un-ducted Rotor

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TLDR
In this article, the vortical flow in the tip region of a three-bladed rotor was examined using particle imaging velocimetry (PIV) and the vortex forming at the tip of the un-ducted propeller was compared to the tip-leakage vortex of the ducted rotor.
Abstract
The vortical flow in the tip region of a three-bladed rotor was examined using particle imaging velocimetry (PIV). The vortex forming at the tip of the un-ducted propeller was compared to the tip-leakage vortex of the ducted rotor. The planar flow fields were used to identify regions of concentrated vorticity and determine instantaneous vortex properties, revealing the presence of a primary tip-leakage vortex surrounded by a number of secondary vortices. Comparison between the ducted and un-ducted rotor indicated that the presence of the duct reduced the relative strength of the primary tip vortex, making its strength a smaller fraction of the overall shed circulation near the tip. The weaker tip-leakage vortex then became closer in strength to the other secondary vortices in the tip-flow region. However, for the rotor tip geometry considered here, the radius of the primary vortex core did not vary substantially between the ducted and un-ducted cases. The variability of the flow was larger for the ducted case, in terms of the primary vortex position, its identified circulation, core size, and inferred core pressure. This variability was also observed in the scaled velocity fluctuations near the core of the vortex.

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Citations
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Measurements of the tip leakage vortex structures and turbulence in the meridional plane of an axial water-jet pump

TL;DR: In this paper, the authors focus on the flow structures in the tip region of a water-jet pump rotor, including the tip-clearance flow and the rollup process of a tip leakage vortex (TLV).
Journal ArticleDOI

Growth, oscillation and collapse of vortex cavitation bubbles

TL;DR: In this article, the growth, oscillation and collapse of vortex cavitation bubbles are examined using both two-and three-dimensional numerical models using both 2D and 3D models.
Journal ArticleDOI

A Review of Tip Clearance in Propeller, Pump and Turbine

Yabin Liu, +2 more
- 22 Aug 2018 - 
TL;DR: In this paper, a systematic review of the literature on tip-cleareance flow and its influence on energy performance is presented, showing that tip-clearance size and tip shape are crucial parameters for tip-leakage vortex.
Journal ArticleDOI

Instantaneous and time-averaged flow fields of multiple vortices in the tip region of a ducted propulsor

TL;DR: In this article, the instantaneous and time-averaged flow fields in the tip region of a ducted marine propulsor are examined, where a primary tip-leakage vortex interacts with a secondary, co-rotating trailing edge vortex and other co-and counterrotating vorticity found in the blade wake.
Journal ArticleDOI

Numerical analysis of developed tip leakage cavitating flows using a new transport-based model☆

TL;DR: In this article, a new cavitation model, which takes into account the effects of vortex on mass transfer process in cavitation, is utilized for the computations of the developed tip leakage vortex cavitating flows.
References
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Journal ArticleDOI

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Cavitation in vortical flows

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A Correlation of Leakage Vortex Cavitation in Axial-Flow Pumps

TL;DR: In this article, a correlation of variables which predict the vortex minimum pressure has been formulated, and measurements of the important variables for this correlation have been made on a high Reynolds number (3×10 6 ) axial-flow test rig.
Journal ArticleDOI

Instantaneous and time-averaged flow fields of multiple vortices in the tip region of a ducted propulsor

TL;DR: In this article, the instantaneous and time-averaged flow fields in the tip region of a ducted marine propulsor are examined, where a primary tip-leakage vortex interacts with a secondary, co-rotating trailing edge vortex and other co-and counterrotating vorticity found in the blade wake.
Journal ArticleDOI

Dynamics and noise emission of laser induced cavitation bubbles in a vortical flow field

TL;DR: In this article, the authors examined the sound produced by the collapse of discrete cavitation bubbles in both a quiescent and a vortical flow and determined its spectral content.
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