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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Hysteresis and two-dimensional nonlinear wave propagation in Berea Sandstone
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Hysteresis and two-dimensional nonlinear wave propagation in Berea Sandstone

机译:Berea砂岩中的磁滞和二维非线性波传播

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We have further developed a two-dimensional endochronic constitutive model applicable to rock in the intermediate strain regime, i.e., approximately 10(-6) to 10(-3), where nonlinear losses, pulse distortion, and harmonic distortions have been documented in the laboratory. An accurate and efficient computation algorithm has been established and used to fit a set of triaxial laboratory data on Berea Sandstone, obtained by G. N. Boitnott of New England Research, Inc., including nonlinear hysteresis for both hydrostatic compression and shear deformation. The constitutive model has been incorporated into a two-dimensional pseudospectral scheme for simulating nonlinear wave propagation. We compare our numerical pseudospectral scheme with the perturbation solutions to nonlinearly elastic plane wave propagation and find that the two solutions are in close agreement. Applying the numerical scheme to the endochronic constitutive model for Berea Sandstone, we find the following results, which confirm and extend previous results obtained with a one-dimensional model: (1) nonlinear propagation from a monochromatic source excites odd harmonics of the source frequency, (2) the interaction of two monochromatic wave fields leads to energy transfer to other bands corresponding to various combinations of the two source frequencies, (3) amplitudes of the harmonics change with distance and show a trade-off between nonlinearity, intrinsic attenuation (hysteresis), and geometrical spreading, (4) for a broadband pressure source, energy is transferred from the principal band to a higher band at the expense of the components at intermediate frequencies; this is diagnostic of nonlinear interactions, and (5) the harmonic amplitude and energy transfer increase nonlinearly with strain amplitude; i.e., higher strain levels lead to higher energy exchange. These simulations of harmonic generation, interaction, and band expansion, based on a model developed from quasistatic experimental observations, agree with dynamic experimental observations. [References: 38]
机译:我们进一步开发了适用于岩石的中应变状态的二维内在本构模型,即大约10(-6)至10(-3),其中非线性损耗,脉冲畸变和谐波畸变已记录在岩石中。实验室。已经建立了准确高效的计算算法,并将其用于拟合Berea砂岩上的一组三轴实验室数据,该数据是由New England Research,Inc.的G. N. Boitnott获得的,包括用于静水压缩和剪切变形的非线性滞后。本构模型已被纳入二维伪谱方案中,用于模拟非线性波传播。我们将数值拟谱方案与非线性弹性平面波传播的摄动解进行了比较,发现这两个解非常接近。将数值方案应用于Berea砂岩的内时本构模型,我们发现以下结果,证实并扩展了以前用一维模型获得的结果:(1)来自单色源的非线性传播激发了源频率的奇次谐波, (2)两个单色波场的相互作用导致能量转移到与两个源频率的各种组合相对应的其他频带,(3)谐波幅度随距离而变化,并在非线性,固有衰减(磁滞)之间进行权衡),以及几何扩展,(4)对于宽带压力源,能量从主频带传输到更高的频带,但会牺牲中频的分量;这是对非线性相互作用的诊断,(5)谐波振幅和能量传递随应变振幅非线性增加;即,较高的应变水平导致较高的能量交换。这些基于准静态实验观测结果开发的模型的谐波产生,相互作用和能带扩展的仿真与动态实验观测结果一致。 [参考:38]

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