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Application of multi-seismic attributes analysis in the study of distributary channels

机译:多地震属性分析在配电渠道研究中的应用

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During the exploration of stratigraphic reservoirs, the key to locating these reservoirs is to identify the sandstone distribution. Seismic data can be used to recognize large-scale distributary-channel sedimentary bodies; however, depiction of sedimentary bodies in small distributary channels using traditional interpretation data from seismic profiles is extremely difficult. In the Upper Cretaceous first sandstone bed of the third member of the Nenjiang Formation (called the Nen 3 member for simplicity) in the XB area of the southern Songliao basin, distributary channels are the main sedimentary facies. The distributary channels migrate frequently; therefore, it is difficult to precisely depict the morphology of the channel and the distribution of sandstone. In this study, we investigated the deposition of distributary channels using equal-scale formation plane seismic attributes such as post-stack amplitude, instantaneous amplitude and seismic waveform classification, analyzed well logging data from target formations, and mapped the distribution of distributary channels. This study shows that seismic sedimentological study and stacking multiple attribute analysis can identify the distribution of distributary channels precisely and effectively. The attributes of equal-scale strata slices are evidently superior to those of time and horizon slices; Attribute extraction and selection of equal-scale formation slices is an essential step. The comprehensive selection of seismic attributes that show a good correlation to a single well can be used to clearly depict channel bodies. The overlap of the 40-Hz single-frequency energy and the RMS amplitude depicts the sedimentary characteristics and shapes of sandstone bodies in main channels as well as small-scale distributary channels more clearly than a single attribute. These attributes show that the first sandstone bed of the Nen 3 member was from distributary channels with complex shapes. The distributary channels cut across each other vertically and laterally. It indicates that, during the deposition of the Nen 3 member in XB area, the direction of the main channel is from north to south, and the provenance could be from north and east. The method of this paper may provide some helpful suggestions to the geologist using seismic attributes to undertake research on sedimentary environment at other places in the world. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在地层油藏勘探过程中,定位这些油藏的关键是识别砂岩分布。地震数据可用于识别大规模的分流河道沉积体。但是,利用地震剖面的传统解释数据来描述小分流河道中的沉积体非常困难。松辽盆地南部XB区嫩江组第三段上白垩统第一砂岩床(以下简称为嫩3段)中,分布通道是主要的沉积相。分销渠道经常迁移;因此,很难准确地描述河道的形态和砂岩的分布。在这项研究中,我们使用等规模的地层平面地震属性(如叠后振幅,瞬时振幅和地震波形分类)调查了分流河道的沉积,分析了来自目标地层的测井数据,并绘制了分流河道的分布图。研究表明,地震沉积学研究和叠加多属性分析可以准确,有效地识别出分流河道的分布。等比例地层切片的属性明显优于时间和地平线切片的属性。属性提取和等比例地层切片的选择是必不可少的步骤。地震属性的综合选择显示出与单口井的良好相关性,可用于清楚地描绘通道主体。 40 Hz单频能量和RMS振幅的重叠比单个属性更清晰地描绘了主要通道和小规模分布通道中砂岩体的沉积特征和形状。这些属性表明,Nen 3成员的第一个砂岩床来自形状复杂的分流河道。分配通道在垂直方向和横向方向上相互切开。这表明,在XB区Nen 3的沉积过程中,主通道的方向为北向南,物源可能为北,东。本文的方法可能为地质学家利用地震属性对世界其他地方的沉积环境进行研究提供一些有益的建议。 (C)2016 Elsevier Ltd.保留所有权利。

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