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驻波中的快速声流:附加外部流胞的产生。

Fast acoustic streaming in standing waves: generation of an additional outer streaming cell.

机构信息

LIMSI-CNRS UPR 3251, Bât. 508 rue John Von Neumann, Campus Univ. Paris Sud, 91403 Orsay, France.

出版信息

J Acoust Soc Am. 2013 Sep;134(3):1791-801. doi: 10.1121/1.4817888.

Abstract

Rayleigh streaming in a cylindrical acoustic standing waveguide is studied both experimentally and numerically for nonlinear Reynolds numbers from 1 to 30 [Re(NL)=(U0/c0)(2)(R/δν)(2), with U0 the acoustic velocity amplitude at the velocity antinode, c0 the speed of sound, R the tube radius, and δν the acoustic boundary layer thickness]. Streaming velocity is measured by means of laser Doppler velocimetry in a cylindrical resonator filled with air at atmospheric pressure at high intensity sound levels. The compressible Navier-Stokes equations are solved numerically with high resolution finite difference schemes. The resonator is excited by shaking it along the axis at imposed frequency. Results of measurements and of numerical calculation are compared with results given in the literature and with each other. As expected, the axial streaming velocity measured and calculated agrees reasonably well with the slow streaming theory for small ReNL but deviates significantly from such predictions for fast streaming (ReNL>1). Both experimental and numerical results show that when ReNL is increased, the center of the outer streaming cells are pushed toward the acoustic velocity nodes until counter-rotating additional vortices are generated near the acoustic velocity antinodes.

摘要

圆柱声驻波导中瑞利流的实验和数值研究,研究了非线性雷诺数从 1 到 30 的情况[Re(NL)=(U0/c0)(2)(R/δν)(2),其中 U0 是速度节点处的声速幅度,c0 是声速,R 是管半径,δν 是声边界层厚度]。在高强度声级下充满空气的圆柱形谐振器中,通过激光多普勒速度测量来测量流动速度。使用高分辨率有限差分格式对可压缩纳维-斯托克斯方程进行数值求解。通过沿轴以施加的频率摇动谐振器来激励它。将测量结果和数值计算结果与文献中的结果以及彼此进行了比较。如预期的那样,对于小的 ReNL,测量和计算的轴向流动速度与缓慢流动理论相当吻合,但对于快速流动(ReNL>1),则与这些预测有很大的偏差。实验和数值结果均表明,随着 ReNL 的增加,外部流动细胞的中心被推向声速节点,直到在声速反节点附近产生反向旋转的附加涡旋。

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