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首页> 外文期刊>Indian Journal of Science and Technology >New Approaches in the Interpretation of Magnetic Survey Data during Prospecting and Exploration of Hydrocarbon Deposits
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New Approaches in the Interpretation of Magnetic Survey Data during Prospecting and Exploration of Hydrocarbon Deposits

机译:油气藏勘探勘探过程中磁测资料解释的新方法

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摘要

The presence of hydrocarbons in the basement and sedimentary cover triggers the epigenetic processes that make the formation of iron minerals possible. At that, there is a fairly clear zoning: the center of flow migration is presented by paramagnetic minerals, the borders are presented by ferromagnetic minerals. This fact makes it possible to use magnetic survey during the prediction and the search for oil and gas deposits. The main problem is the interpretation method of the data obtained through the data magnetic survey. The authors of the article suggest the use of multiple approaches to the analysis and interpretation of the obtained data. The first approach is the lineament analysis, the peculiarity of which in this case is the design of maps on the basis of linear objects expressed in a magnetic field. This map will reflect the borders of objects contrasting by magnetic properties, including the deposit borders. The comparison of magnetic field lineaments and the lineaments of relief helps to identify the fault zones in which the migration of hydrocarbons takes place. Another approach in the interpretation of magnetic survey data is the calculation of the magnetic field fractal characteristics. An indication of hydrocarbon migration in this case is the fractal dimension, the high values of which are characterized for the areas where the migration of hydrocarbons took or takes place. The basic wavelets developed on the basis of point source potential derivatives were used for the quantitative analysis of the magnetic field.
机译:地下室和沉积层中碳氢化合物的存在触发了表观遗传过程,使铁矿物质的形成成为可能。那时,有一个相当清晰的分区:流动迁移的中心由顺磁性矿物表示,边界由铁磁性矿物表示。这一事实使得在预测和寻找油气藏的过程中可以使用磁测量。主要问题是通过数据磁测获得的数据的解释方法。本文的作者建议使用多种方法来分析和解释所获得的数据。第一种方法是线性分析,在这种情况下,其独特之处是基于磁场中表示的线性对象的图的设计。该图将反映与磁特性形成对比的对象边界,包括沉积边界。磁场谱线和释放谱线的比较有助于确定发生烃运移的断层带。解释磁场测量数据的另一种方法是计算磁场分形特征。在这种情况下,碳氢化合物迁移的指示是分形维数,分形维数较高,可用于发生或发生碳氢化合物迁移的区域。在点源电位导数的基础上开发的基本小波用于磁场的定量分析。

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