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Attenuation and Damping of Multireflected Transient Elastic Waves in a Pile

机译:桩中多反射瞬态弹性波的衰减和阻尼

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Early time transient waves multireflected in a finite pile, governed by a damped wave equation, are analyzed by a reverberation-ray matrix. The pile is surrounded by compacted soil, and the composite is modeled by elastic springs and viscous dampers distributed along the length and at the tip of an elastic rod. Steady-state waves with complex frequencies and wave numbers that are generated by a source of harmonic time function at the top and reverberated between the top and bottom surface of the pile are sorted in matrix form into ray-groups, arriving at a receiver in successive orders of reflections from the bottom. The steady-state ray groups are synthesized into a series of nonsingular Fourier integrals that can be evaluated accurately with a fast Fourier-transform algorithm. The first integral (zeroth-order) has also been reduced by complex contour integration to the well-known closed-form solution in Bessel functions for a semi-infinite pile. Detailed time records of velocity response received at the top after three reflections are calculated to illustrate attenuation and damping; arrival times and amplitude-phase change on each reflection for various lateral and base supports. The calculated records resemble ultrasonic nondestructive testing data.
机译:通过混响射线矩阵分析了由阻尼波方程控制的,在有限桩中多次反射的早期瞬态波。桩周围被压实的土壤包围,复合材料通过沿弹性杆的长度和尖端分布的弹性弹簧和粘性阻尼器建模。由顶部的谐波时间函数源生成并在桩的顶部和底部表面之间回荡的具有复杂频率和波数的稳态波按矩阵形式分为射线组,并依次到达接收器从底部开始的思考顺序。稳态射线组被合成为一系列非奇异傅立叶积分,可以使用快速傅立叶变换算法精确评估它们。通过复杂的轮廓积分,对于半无限桩的Bessel函数中的众所周知的闭合形式解决方案,第一积分(零阶)也已减少。计算了三个反射后在顶部收到的速度响应的详细时间记录,以说明衰减和阻尼。各种横向和基础支撑的每次反射的到达时间和幅度相位变化。计算出的记录类似于超声无损检测数据。

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