McConnell James A
Acoustech Corporation, P.O. Box 139, State College, Pennsylvania 16804, USA.
J Acoust Soc Am. 2003 Mar;113(3):1395-405. doi: 10.1121/1.1542646.
The dynamics of a compliantly suspended acoustic velocity sensor having a spherical geometry are analyzed using theory and experiment. The analysis starts with a review of the motion associated with an unconstrained solid sphere when subjected to an acoustic plane wave in an unbounded inviscid fluid medium. The theory is then modified to account for the inclusion of an inertial sensor and an external suspension system. Accordingly, the open-circuit receiving response of a geophone-based and accelerometer-based device is derived. Density variations associated with the sphere and the surrounding fluid medium are assessed along with the effects fluid viscosity. Wave effects in the sphere and the suspension system are also analyzed.
利用理论和实验分析了具有球形几何形状的柔顺悬挂声速传感器的动力学特性。分析从回顾无界无粘性流体介质中受声平面波作用的无约束实心球体的运动开始。然后对理论进行修正,以考虑惯性传感器和外部悬挂系统的纳入。据此,推导了基于地震检波器和基于加速度计的装置的开路接收响应。评估了与球体和周围流体介质相关的密度变化以及流体粘度的影响。还分析了球体和悬挂系统中的波效应。