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Experimental investigation on the jet-like acoustic streaming in front of an oscillating circular piston

机译:振荡圆形活塞前射流状声流的实验研究

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Results of an experimental investigation on the sound field produced by a circular piston and the flow of air generated by the radiated acoustic wave are presented. The aim has been to create a strong jet-like wind by means of a beam of sound radiated by a powerful ultrasonic source, and to measure the speed of the airflow. The experimental data are compared with results of numerical simulations obtained by means of the finite-difference time-domain method. Two Langevin type transducers were used as the sound sources; one had a radiating surface with a diameter of 1.5 cm and the diameter of the other was 5 cm. The experimental results show that the speed of the airflow is more intense along the axis of the circular source, and that this flow extends along a larger distance for a source with a bigger diameter. The experimental data agree qualitatively well with the numerical simulations, but the obtained measurements were approximately twenty times larger than the values expected from the numerical simulations.
机译:给出了对圆形活塞产生的声场和辐射声波产生的空气流进行实验研究的结果。目的是通过强大的超声源发出的声束产生强烈的喷射状风,并测量气流的速度。将实验数据与通过有限差分时域方法获得的数值模拟结果进行比较。使用两个Langevin型换能器作为声源。一个辐射表面的直径为1.5厘米,另一个辐射表面的直径为5厘米。实验结果表明,沿着圆形源的气流速度更快,对于直径更大的源,气流沿更大的距离延伸。实验数据在质量上与数值模拟吻合得很好,但是获得的测量值大约比数值模拟所期望的值大二十倍。

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