Department of Structural Engineering, University of Naples Federico II, Via Claudio 21, 80125 Napoli, Italy.
Ultrasonics. 2013 Mar;53(3):652-7. doi: 10.1016/j.ultras.2012.11.013. Epub 2012 Nov 29.
The paper is devoted to computer and experimental simulation of US (ultrasonic) signal propagation in acoustic solids with micro-structure. Any change in the percentage of flaws or pores influences considerably the value of the ultrasonic wave speed. The theoretical analysis is based upon the Ray Tracing algorithm. We calculate numerically the full path of each ray from the transmitter to the receiver, in its multiple reflections between the surfaces of the internal obstacles. The natural experiments are performed in a water basin with some arrays of equal metallic round rods. This simulates the US evaluation of the mechanical properties of concrete. The computer modeling allows us to construct the envelope of the US signal registered at the receiving transducer. Then we simulate the dependence of the wave speed versus porosity. There is a sufficiently good accordance between numerical and experimental results.
本文致力于计算机和实验模拟超声信号在具有微观结构的声学固体中的传播。任何缺陷或孔隙百分比的变化都会对超声波速度值产生相当大的影响。理论分析基于光线追踪算法。我们对每个从发射器到接收器的光线的完整路径进行数值计算,在内部障碍物的表面之间进行多次反射。自然实验是在一个带有一些等距金属圆棒阵列的水盆地中进行的,这模拟了超声对混凝土机械性能的评估。计算机建模使我们能够构建在接收换能器上记录的超声信号的包络。然后我们模拟了波速与孔隙率的关系。数值结果和实验结果之间有相当好的一致性。