DETAILED STUDY OF THE VELOCITY SECTION BY INTEGRATING SEISMIC DATA OF SINGLE AND MULTIPLE PROFILING

T. Ahmadov
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Abstract

The velocities of propagation of seismic waves are one of the most important kinematic parameters; the geological efficiency of seismic exploration ultimately depends on the accuracy and completeness of information about the velocities. Methods for determining effective velocities from seismic data, proposed for the period of application of seismic exploration by the method of reflected waves, are listed. The methods for determining the velocities are divided into 2 large groups: the first group includes methods for determining the effective velocities based on automatic or visual tracking of the in-phase axes (i.e. hodographs) of reflected waves on the seismograms of the OTP (common point of explosion) or CDP (common depth point), and then their approximation by hyperbolas, and the second group includes methods based on the use of seismic wave field analysis in controlled directions. The main disadvantages of the existing methods are indicated, the industrial method, which is widely used at the present time, is highlighted, based on the analysis of the wave field in controlled directions, which do not provide sufficiently accurate and complete information for solving the traditional problem of kinematic interpretation, i.e. transition from time sections to migrated deep ones. A new method for determining the effective velocity is proposed, which is fundamentally different from the methods used so far in the practice of seismic exploration, since in this method, seismic data of single and multiple profiling are used not separately, as it was until now, but in a complex manner. Formulas are derived for determining the effective speed from the data of single and multiple profiling. A method for determining the effective speed has been developed and a sequence of procedures for solving the problem is presented. The results of research on a specific example are given by solving the direct and inverse problems for the Sazhdag area of the Mesopotamia of the Kura and Iori rivers. The influence of errors in the values of the parameters included in the formula for calculating the effective speed on the final results is investigated. At the end of the article, the main advantages of the proposed method are listed.
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结合单剖面和多剖面地震资料对速度剖面进行了详细研究
地震波的传播速度是最重要的运动学参数之一;地震勘探的地质效率最终取决于速度信息的准确性和完整性。列举了在反射波法地震勘探应用期间提出的利用地震资料确定有效速度的方法。确定速度的方法分为两大类:第一类是通过自动或目视跟踪共爆点或共纵深点地震记录上反射波的同相轴(即半轴),然后用双曲线逼近确定有效速度的方法;第二类是利用可控方向地震波场分析的方法。指出了现有方法的主要缺点,强调了目前广泛使用的工业方法,通过对受控方向波场的分析,不能提供足够准确和完整的信息来解决传统的运动解释问题,即从时间剖面到偏移深度剖面的过渡。提出了一种新的确定有效速度的方法,这种方法与迄今为止地震勘探实践中使用的方法有本质的区别,因为它不是像以前那样单独使用单剖面和多剖面地震资料,而是以一种复杂的方式使用。从单次和多次剖面数据推导出了确定有效速度的公式。本文提出了一种确定有效转速的方法,并给出了求解该问题的一系列步骤。通过求解库拉河和爱奥里河流域美索不达米亚萨扎达格地区的正问题和反问题,给出了具体实例的研究结果。研究了有效转速计算公式中各参数取值误差对最终结果的影响。在文章的最后,列举了该方法的主要优点。
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