首页> 外文会议>Indonesian Petroleum Association Annual Convention v.1; 20031014-20031016; Jakarta; ID >INTEGRATED SEISMIC MULTI-ATTRIBUTE ANALYSIS FOR COMPLEX FLUVIO-DELTAIC RESERVOIR PROPERTIES MAPPING, MINAS FIELD, CENTRAL SUMATRA
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INTEGRATED SEISMIC MULTI-ATTRIBUTE ANALYSIS FOR COMPLEX FLUVIO-DELTAIC RESERVOIR PROPERTIES MAPPING, MINAS FIELD, CENTRAL SUMATRA

机译:中央苏门答腊米纳斯油田复杂三角洲-储层物性映射综合地震多属性分析

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Minas field, operated by PT Caltex Pacific Indonesia in Central Sumatra, is characterized by a complex fluvio-deltaic depositional system where lateral and vertical distribution of sand bodies is very heterogeneous. The existing high-resolution sequence stratigraphic framework based on conventional cores and well logs is inadequate for accurately mapping reservoir-scale flow units. To overcome this problem, seismic multi-attribute analysis utilizing high-resolution 3D seismic data has been investigated. The prime objective is to differentiate sands from shales using the seismic data, especially for inter-well correlations (injector to producer). The integrated attributes include: 1) internal seismic attributes (amplitude, frequency, etc), and 2) log property attributes (porosity, gamma ray, etc) derived from cross-plots between the internal seismic attributes and well data. Cross-plot analyses were generated for sand/shale intervals that roughly correspond to five main oil-producing reservoirs. These five intervals are defined and bracketed by key field-wide sequence stratigraphic marker horizons: 1) M1 - SB1, 2) SB1 -SB2, 3) SB2 - M6, 4) M6 - SB4, and 5) SB2 -SB2.1. For Interval 1, the acoustic impedance (AI) can distinguish sands from shales, thus seismic inversion is recommended for this interval. Intervals 2 to 5 have overlapping AI and it is very difficult to differentiate sand from shales using the normal amplitude sections. Therefore, the most applicable internal seismic attributes are the derivatives of frequency. These are used to generate seismic pseudo-gamma ray, pseudo-porosity and pseudo-density sections, which are derived from the multi-attributes analysis. Each of these has proven to be effective in differentiating sand and shale in different portions of Intervals 2 to 5. Consequently, the system-tracts can also be delineated more easily, thus providing an effective tool for guiding well correlations. The results of combining various derived attributes provide additional support for the detailed correlation and mapping of the location, geometry and quality of individual sand bodies within Minas field. This will lead to improved waterflood optimization and infill well selection. Newly acquired well data have confirmed the results obtained in this study.
机译:由印度尼西亚苏门答腊中部加德士太平洋公司(PT Caltex Pacific Indonesia)运营的Minas油田的特征是复杂的河流-三角洲沉积系统,其中砂体的横向和垂直分布非常不均匀。现有的基于常规岩心和测井的高分辨率层序地层学框架不足以精确地绘制储层规模的流动单元。为了克服这个问题,已经研究了利用高分辨率3D地震数据的地震多属性分析。主要目的是利用地震数据来区分砂岩和页岩,特别是对于井间相关性(注入者与生产者)。综合属性包括:1)内部地震属性(幅度,频率等),以及2)对数属性属性(孔隙度,伽马射线等),它们是从内部地震属性和井数据之间的交叉图导出的。生成的横断面分析大致对应于五个主要产油层的砂/页岩间隔。这五个间隔由关键的全层层序地层标志层定义和括起来:1)M1-SB1,2)SB1-SB2,3)SB2-M6,4)M6-SB4,和5)SB2-SB2.1。对于间隔1,声阻抗(AI)可以区分出砂岩和页岩,因此建议在此间隔进行地震反演。间隔2到5具有重叠的AI,并且使用正常的振幅部分很难区分砂岩和页岩。因此,最适用的内部地震属性是频率的导数。这些用来生成地震伪伽马射线,伪孔隙度和伪密度截面,这些截面是从多属性分析中得出的。事实证明,这些方法均能有效区分区间2至5的不同部分中的砂岩和页岩。因此,系统段也可以更容易地描绘出来,从而提供了一种有效的工具来指导井的相关性。合并各种派生属性的结果为米纳斯气田内各个砂体的位置,几何形状和质量的详细关联和映射提供了额外的支持。这将导致改进的注水优化和填充井的选择。新获得的油井数据证实了本研究中获得的结果。

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