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The Frequency (or Time) -Temperature Equivalence of Relaxation in Saturated Rocks

机译:饱和岩石中弛豫的频率(或时间)-温度等价

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Laboratory data on dry and saturated rocks show that pore fluid has the most important effect on rock attenuation. It is known that viscous and inertial coupling between the frame of a porous rock and its pore fluid dissipates seismic energy by conversion to heat and hence cause attenuation. We show that attenuation peaks, in saturated rock have the same property as that of typical thermally activated relaxations. In the frequency domain, a plot of attenuation versus frequency shows an obvious systematic shift to higher frequencies with increasing temperatures. Similarly, the attenuation versus temperature curve moves to higher temperature with increasing frequencies. The attenuation peaks are somewhat broader than that for a Zener relaxation. A Cole-Cole distribution of relaxation times closely matches the attenuations. This behavior can be explained theoretically by local flow mechanisms.
机译:干燥和饱和岩石的实验室数据表明,孔隙流体对岩石衰减具有最重要的影响。众所周知,多孔岩石的框架与其孔隙流体之间的粘性和惯性耦合通过转化为热来耗散地震能量,从而引起衰减。我们表明,饱和岩石中的衰减峰与典型的热活化弛豫具有相同的性质。在频域中,衰减与频率的关系图显示,随着温度的升高,系统明显地向更高的频率转移。同样,衰减随温度变化的曲线随着频率的增加而移至更高的温度。衰减峰比齐纳弛豫峰宽。弛豫时间的Cole-Cole分布与衰减紧密匹配。理论上可以通过局部流动机制解释这种行为。

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