首页> 外文期刊>The Journal of the Acoustical Society of America >Elastic pulsed wave propagation in media with second- or higher-order nonlinearity. Part II. Simulation of experimental measurements on Berea sandstone
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Elastic pulsed wave propagation in media with second- or higher-order nonlinearity. Part II. Simulation of experimental measurements on Berea sandstone

机译:弹性脉冲波在具有二阶或更高阶非线性的介质中的传播。第二部分Berea砂岩实验测量的模拟

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摘要

The theoretical 1-D wave propagation model described in Part I is applied to laboratory data from dynamic propagating wave experiments on a 2-m-long cylindrical rod of Berea sandstone as previously reported by Meegan et al. [J. Acoust. Soc. Am. 94, 3387–3391 (1993)]. Using the iterative procedure, good agreement is obtained limiting model parameters up to cubic anharmonicity (i.e., two nonlinear terms proportional to and in the stress-strain polynomial expansion). Both the data and simulations illustrate that nonlinear response is likely to occur even at extremely small strains (order 10 – 7). As generally expected for disordered materials, the resulting values for the nonlinear parameters are several orders of magnitude larger than those for intact (uncracked, noncompliant) materials. The values obtained for the dynamic nonlinearity parameters are discussed in relation to commonly obtained static and resonance results which suggest the need to include more complicated phenomena such as hysteresis in the theory.
机译:如Meegan等人先前报道,将第一部分中描述的理论一维波传播模型应用于来自在长度为2 m的Berea砂岩圆柱棒上的动态传播波实验的实验室数据。 [J. co Soc。上午。 94,3387–3391(1993)]。使用迭代过程,可以获得良好的一致性,从而将模型参数限制到三次非谐(即,两个非线性项与应力-应变多项式展开成正比)。数据和仿真均表明,即使在极小的应变(10-7阶)下也可能发生非线性响应。正如通常对无序材料所期望的那样,非线性参数的结果值比完整(未破裂,不顺应)材料的结果大几个数量级。相对于通常获得的静态和共振结果,讨论了为动态非线性参数获得的值,这表明需要在理论中包括更复杂的现象,例如磁滞。

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