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Acoustic properties of sediments saturated with gas hydrate, free gas and water

机译:天然气水合物,游离气体和水饱和的沉积物的声学特性

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摘要

We obtain the wave velocities and quality factors of gas-hydrate-bearing sediments as a function of pore pressure, temperature, frequency and partial saturation. The model is based on a Biot-type three-phase theory that considers the existence of two solids (grains and gas hydrate) and a fluid mixture. Attenuation is described with the constant-Q model and viscodynamic functions to model the high-frequency behaviour. We apply a uniform gas/water mixing law that satisfies Wood's and Voigt's averages at low and high frequencies, respectively. The acoustic model is calibrated to agree with the patchy-saturation theory at high frequencies (White's model). Pressure effects are accounted by using an effective stress law for the dry-rock moduli and permeabilities. The dry-rock moduli of the sediment are calibrated with data from the Cascadia margin. Moreover, we calculate the depth of the bottom simulating reflector (BSR) below the sea floor as a function of sea-floor depth, geothermal gradient below the sea floor, and temperature at the sea floor.
机译:我们获得了含气水合物沉积物的波速和品质因数,它是孔隙压力,温度,频率和部分饱和度的函数。该模型基于Biot型三相理论,该理论考虑了两种固体(颗粒和气体水合物)和流体混合物的存在。用常数Q模型和黏动力学函数描述高频行为的衰减。我们采用统一的气/水混合定律,分别满足低频和高频的伍德和沃伊特平均值。校准声学模型,使其与高频处的饱和饱和度理论一致(怀特模型)。通过对干岩模量和渗透率使用有效应力定律来解释压力效应。沉积物的干岩模量用卡斯卡迪亚边界的数据校准。此外,我们根据海底深度,海底以下的地热梯度和海底温度来计算海底以下的底部模拟反射器(BSR)的深度。

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