首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Scaling of Tip Vortex Cavitation Inception Noise With a Bubble Dynamics Model Accounting for Nuclei Size Distribution
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Scaling of Tip Vortex Cavitation Inception Noise With a Bubble Dynamics Model Accounting for Nuclei Size Distribution

机译:考虑核尺寸分布的气泡动力学模型缩放顶涡空化起始噪声

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The acoustic pressure generated by cavitation inception in a tip vortex flow was simulated in water containing a realistic bubble nuclei size distribution using a surface-averaged pressure (SAP) spherical bubble dynamics model. The flow field was obtained by the Reynolds-averaged Navier-Stokes computations for three geometrically similar scales of a finite-span elliptic hydrofoil. An "acoustic" criterion, which defines cavitation inception as the flow condition at which the number of acoustical "peaks" above a pre-selected pressure level exceeds a reference number per unit time, was applied to the three scales. It was found that the scaling of cavitation inception depended on the reference values (pressure amplitude and number of peaks) selected. Scaling effects (i.e., deviation from the classical σ_(i)∝R_(e)~(0.4)) increase as the reference inception criteria become more stringent (lower threshold pressures and less number of peaks). Larger scales tend to detect more cavitation inception events per unit time than obtained by classical scaling because a relatively larger number of nuclei are excited by the tip vortex at the larger scale due to simultaneous increase of the nuclei capture area and of the size of the vortex core. The average nuclei size in the nuclei distribution was also found to have an important impact on cavitation inception number. Scaling effects (i.e., deviation from classical expressions) become more important as the average nuclei size decreases.
机译:使用表面平均压力(SAP)球形气泡动力学模型,在包含实际气泡核尺寸分布的水中模拟了由尖端涡流中的空化开始产生的声压。流场是通过雷诺平均Navier-Stokes计算获得的,它们对有限跨度的椭圆水翼艇的三个几何相似的比例进行了计算。将“气蚀”判据定义为空化开始,即在预先选定的压力水平之上的声学“峰”的数目超过每单位时间的参考数时的流动条件。发现空化开始的比例取决于所选择的参考值(压力幅度和峰值数量)。比例效应(即偏离经典σ_(i)∝R_(e)〜(0.4)的程度)随着参考起始标准变得更加严格(阈值压力越低且峰数越少)而增加。较大的尺度倾向于比传统尺度获得的单位时间检测到更多的空化起始事件,因为由于核捕获面积和涡旋大小的同时增加,尖端涡旋以较大的尺度激发了相对较大数量的核。核心。还发现核分布中的平均核尺寸对空化起始数具有重要影响。随着平均核尺寸的减小,缩放效应(即偏离经典表达式)变得更加重要。

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