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Response analysis of shale bedding structure to ultrasonic characteristics and its application

机译:页岩层理结构对超声特征的响应分析及其应用

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Based on the wave theory, different bedding structure models for shales in Lower Silurian Longmaxi Formation of southeastern Chongqing area were established, numerical simulations of responses of different bedding structures of shale to ultrasonic wave were carried out by using the second order in time and fourth order in space grid finite difference method, based on the grey system theory, sensitive factors of acoustic parameters of bedding structure were selected, and the dynamic mechanical parameter model of bedded shale was established, which was verified by the ultrasonic transmission experiment results on core down Well ZY1 and YY1 and the logging data of Well ZY2. The results show that: (1) The correlation coefficient between analog and experimental waveforms is greater than 80%, indicating that the numerical simulation method can effectively simulate ultrasonic transmission experiment. (2) Acoustic velocity is a conventional sensitive factor used to characterize shale bedding structure, whereas the attenuation coefficient is sensitive to the change of bedding thickness, with correlation coefficient of 0.89, therefore, using the normalized results of attenuation coefficient to comprehensively describe the shale bedding can make the results more accurate. (3) The correlation between the dynamic and static parameters calculated by the model is better than that of the traditional model; and the predicted values of rock mechanics obtained by using the model and logging data inversion are in good agreement with the experimental values. The research results lay the foundation for further accurate prediction of rock mechanic parameters using sonic logging data.
机译:基于波动理论,建立了重庆东南地区下志留统龙马溪组页岩层理结构的不同模型,利用二阶时间和四阶对页岩不同层理结构对超声波响应的数值模拟进行了数值模拟。在空间网格有限差分法中,基于灰色系统理论,选择了层理结构声学参数的敏感因素,建立了层状页岩的动态力学参数模型,并通过岩心下井的超声传输实验结果进行了验证。 ZY1和YY1以及ZY2井的测井数据。结果表明:(1)模拟波形与实验波形之间的相关系数大于80%,表明该数值模拟方法可以有效地模拟超声传输实验。 (2)声速是表征页岩层理结构的常规敏感因子,而衰减系数对层理厚度变化敏感,相关系数为0.89,因此,利用衰减系数的归一化结果来全面描述页岩床上用品可以使结果更准确。 (3)模型计算出的动,静态参数之间的相关性优于传统模型;利用该模型和测井资料反演得到的岩石力学预测值与实验值吻合良好。研究结果为利用声波测井数据进一步准确预测岩石力学参数奠定了基础。

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