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Estimation of AVO response of methane-hydrate bearing layer

机译:甲烷 - 水合物轴承层的抗助换估计

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Three phases model of Leclaire et al. is established as three phases extended Biot model. It is confirmed by experimental studies using glass beads, kerosene and ice, which is simulated a methane hydrate. The emulsification of kerosene into water at room temperature turns to ice and liquid kerosene at -20 degree Celsius. Thus, the change of kerosene contents in water brings wide range of ice contents in pore spaces generated by glass beads packing. Elastic velocity measurements of the three phases, i.e. glass beads, kerosene and ice, at ultra sonic frequency are carried out in range of 72-95 percent of ice saturation in pore space. Using the three phases extended Biot model, the velocities at ultra-sonic are converted into a reflection seismic frequency of less than 100 Hz. We study amplitude and AVO response at bottom simulating reflector (BSR), which normally might indicate the existence of methane hydrate and gas bearing sandstone below it. We show amplitude and AVO response that can be generated at the reflection from the interface between methane hydrate bearing sandstone and brine sandstone. Thus, no gas zone below methane hydrate is required to generate amplitude anomaly or AVO. This evidence may explain the BSR, by which no gas trap structure is formed, as well.
机译:Leclaire等人的三个阶段模型。建立为三个阶段扩展Biot模型。通过使用玻璃珠,煤油和冰,模拟甲烷水合物的实验研究证实了它。在室温下将煤油乳化成水转向-20摄氏度的冰和液体煤油。因此,水中的煤油含量的变化在玻璃珠包装产生的孔隙中具有宽范围的冰含量。在孔隙空间中的冰饱和度的范围内进行三相,即玻璃珠,煤油和冰,即在孔隙空间中的冰饱和度的范围内进行弹性速度测量。使用三个阶段扩展的Biot模型,超声波的速度被转换为小于100Hz的反射地震频率。我们在底部模拟反射器(BSR)的幅度和AVO响应,通常可能表明它在其下方的甲烷水合物和煤气砂岩的存在。我们展示了可以在甲烷水合物轴承砂岩和盐水砂岩之间的界面反射中产生的幅度和抗振响应。因此,不需要低于甲烷水合物的气体区以产生幅度异常或AVO。该证据可以解释BSR,也没有形成气体阱结构。

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