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An experimental analysis on the elastic mechanical parameters of weakly-consolidated non-diagenetic gas hydrate sediments

机译:弱固结非成岩天然气水合物沉积物弹性力学参数的实验分析

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Gas hydrate (hereinafter, "hydrate" for short) in the marine environment mostly lies in weakly consolidated sediments, so its undisturbed coring is difficult and costly. In view of this, it is necessary to understand the relationship between acoustic properties and elastic mechanical properties of hydrates through laboratory experiments. In this paper, samples of hydrate sediments were prepared indoors. Then, petrophysical experiments were carried out on these samples to measure the electric parameters and acoustic parameters of hydrate sediments. Finally, according to the theory of elasticity, the dynamic elastic mechanical parameters under three axial compressions, three particle sizes and three shale contents were calculated to analyze their effects on the dynamic elastic mechanical parameters of hydrate sediments under different conditions. And the following research results were obtained. First, when the hydrate saturation is in a certain range, it is in a proportional relationship with the elastic parameters of sediments. Second, when the hydrate saturation is constant, the dynamic Young's modulus of hydrate sediments increases, but the Poisson's ratio has little to do with the axial compression as particle sizes (0.125–1.180?mm) and axial compression increase and shale content decreases. Third, a model of the relationship between the elastic parameters and the shale content and axial compression is established. In conclusion, the dynamic elastic mechanical indexes of gas hydrate obtained from the acoustic logging methodology will solve the above difficulties and the research results provide a reference for calculating the mechanical properties of hydrate sediments by use of logging data.
机译:海洋环境中的天然气水合物(以下简称“水合物”)大多位于固结较弱的沉积物中,因此难以打扰的取芯过程既昂贵又昂贵。有鉴于此,有必要通过实验室实验来了解水合物的声学性能与弹性机械性能之间的关系。本文在室内准备了水合物沉积物样品。然后,对这些样品进行了岩石物理实验,以测量水合物沉积物的电参数和声学参数。最后,根据弹性理论,计算了三种轴向压缩,三种粒径和三种页岩含量下的动态弹性力学参数,以分析其对不同条件下水合物沉积物动态弹性力学参数的影响。并获得了以下研究结果。首先,当水合物饱和度在一定范围内时,它与沉积物的弹性参数成比例关系。第二,当水合物饱和度恒定时,水合物沉积物的动态杨氏模量增加,但泊松比与轴向压缩无关,因为粒径(0.125-1.180?mm)和轴向压缩增加且页岩含量降低。第三,建立弹性参数与页岩含量和轴向压缩关系的模型。综上所述,利用声波测井方法获得的天然气水合物的动态弹性力学指标将解决上述难题,研究结果为利用测井数据计算水合物沉积物的力学性质提供参考。

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