Yusuf Taofeek Ayotunde, Pyo Seonghun, Roh Yongrae
School of Mechanical Engineering, Kyungpook National University, Daegu 41556, Korea.
Sensors (Basel). 2021 May 21;21(11):3591. doi: 10.3390/s21113591.
In this study, we present a novel approach to the design of a conformal volumetric array composed of M × N convex subarrays in two orthogonal curvilinear directions for underwater acoustic imaging for mine detection. Our design targets require that the proposed array transducer has three-dimensional half-power beamwidths of 85° and 25° in either of its convex subarray parts, while also reaching a peak transmitting voltage response above 147 dB. The radiated sound pressure of the subarrays was independently derived as a function of their geometrical parameters. The resulting directional factors were then combined to analyze the beam profile of the entire array. The design was finally optimized to minimize the ripple level. To validate this theoretical design, the structure was modeled and analyzed using the finite element method. The comparison between the resulting beam pattern from the finite element analysis and the analytical computation showed an excellent compliance. The method advanced is a simple and systematic analytical model to facilitate the development of new conformal volumetric arrays for underwater mine detection.
在本研究中,我们提出了一种新颖的方法来设计共形体积阵列,该阵列由M×N个凸子阵列在两个正交曲线方向上组成,用于水下声学成像以探测水雷。我们的设计目标要求所提出的阵列换能器在其任一凸子阵列部分具有85°和25°的三维半功率波束宽度,同时还要达到高于147 dB的峰值发射电压响应。子阵列的辐射声压是根据其几何参数独立推导出来的。然后将所得的方向因子组合起来分析整个阵列的波束轮廓。最后对设计进行优化以最小化纹波水平。为了验证这一理论设计,使用有限元方法对该结构进行了建模和分析。有限元分析所得波束方向图与解析计算之间的比较显示出极佳的一致性。所提出的方法是一种简单且系统的分析模型,有助于开发用于水下探雷的新型共形体积阵列。