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首页> 外文期刊>Journal of Sound and Vibration >Acoustic radiation from cylindrical transducer arrays
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Acoustic radiation from cylindrical transducer arrays

机译:圆柱形换能器阵列的声辐射

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摘要

A method is presented to determine the omni-directional and directional far-field pressures radiated by cylindrical transducer arrays in an infinite rigid cylindrical baffle. The solution to the Helmholtz equation and the displacement continuity condition at the interface between the array and the surrounding water are used to determine the pressure. The displacement of the surface of each piston transducer is in the direction of the normal to the array and is assumed to be uniform. Expressions are derived for the pressure radiated by a sector of the array vibrating in-phase, the entire array vibrating in-phase, and a sector of the array phase-shaded to simulate radiation from a rectangular piston. It is shown that the uniform displacement required for generating a source level of 220 dB ref. μPa at 1 m that is omni-directional in the azimuthal plane is in the order of 1 μm for typical arrays. Numerical results are presented to show that there is only a small difference between the on-axis pressures radiated by phased cylindrical arrays and planar arrays.
机译:提出了一种确定无限刚性圆柱隔板中圆柱换能器阵列辐射的全向和定向远场压力的方法。使用亥姆霍兹方程的解和阵列与周围水之间的界面处的位移连续性条件确定压力。每个活塞式换能器的表面的位移沿阵列法线的方向,并且假定是均匀的。对于由阵列同相振动的部分,整个阵列同相振动的部分和被阴影遮蔽以模拟来自矩形活塞的辐射的阵列部分得出的压力推导表达式。结果表明,产生220 dB ref的源电平所需的均匀位移。对于典型阵列,在方位角平面上全向的1 m处的μPa约为1μm。数值结果表明,相控圆柱阵列和平面阵列辐射的轴向压力之间只有很小的差异。

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