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Estimation of gas hydrate saturation at the slope in the northwest of South China Sea

机译:南海西北坡估计天然气水合物饱和度

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Lack of drilling and inversion data is therefore difficult to calculate hydrate saturation in the region of interest. There remains no effective solution in the literature. This study combines the method of impedance index calculation and one-dimensional forward modeling to estimate the upper and lower limits of hydrate saturation. In the current work, the calculation of hydrate saturation includes three steps: (1) The relationship between hydrate saturation and P-wave impedance by equivalent medium theory is established and then is converted into the relationship between hydrate saturation and impedance index. (2) Impedance index of water-bearing and hydrate formation is obtained from the velocity model based on the forward modeling. (3) The upper and lower limits of hydrate saturation are obtained by plugging in the impedance index into the equation of hydrate saturation. This method is just apt for the situation with the range of porosity from 30% to 70%, velocity of matrix grains from 30% to 70%, and in-phase reflections. This study demonstrates that the upper and lower limits of hydrate saturation can be obtained in the region lack of drilling and inversion data.
机译:因此,缺乏钻孔和反转数据难以在感兴趣区域中计算水合物饱和度。文学中没有有效的解决方案。该研究结合了阻抗指数计算的方法和一维前向建模,以估计水合物饱和度的上限和下限。在当前的工作中,水合物饱和度的计算包括三个步骤:(1)建立了等效介质理论的水合物饱和度和P波阻抗之间的关系,然后转换为水合物饱和度和阻抗指数之间的关系。 (2)基于正向建模的速度模型,从速度模型获得(2)耐含水和水合物形成的阻抗指数。 (3)通过将阻抗指数堵塞进入水合物饱和度方程,获得水合物饱和的上限和下限。该方法仅适用于孔隙率范围为30%至70%的情况,基质谷物的速度为30%至70%,以及相位的反射。本研究表明,可以在该区域缺乏钻孔和反转数据中获得水合物饱和的上限和下限。

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