首页> 外文会议>Indonesian Petroleum Association Annual Convention v.1; 20031014-20031016; Jakarta; ID >COLOURED SEISMIC INVERSION, A SIMPLE, FAST AND COST EFFECTIVE WAY OF INVERTING SEISMIC DATA: EXAMPLES FROM CLASTIC AND CARBONATE RESERVOIRS, INDONESIA
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COLOURED SEISMIC INVERSION, A SIMPLE, FAST AND COST EFFECTIVE WAY OF INVERTING SEISMIC DATA: EXAMPLES FROM CLASTIC AND CARBONATE RESERVOIRS, INDONESIA

机译:彩色地震反演,一种简单,快速且成本有效的地震数据反演方法:以印度尼西亚碎屑岩和碳酸盐岩储层为例

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Coloured Seismic Inversion (SCI) is a simple, fast and cost effective way of inverting seismic reflection data from an interface attribute to a layer-based attribute. The process creates a volume that is rotated 90 degrees with respect to the reflection data and whose amplitude spectrum matches that of well log impedance in a gross sense. The result of the process is a relative impedance seismic volume, which has in effect been shaped to well data in terms of amplitude and frequency. In addition no wavelet estimation is needed, and although an interpretive low frequency model is not used, the technique provides a robust inversion that honours the impedance trend of available well data. This process can be undertaken by non-specialist, seismic interpreters, is very fast to perform and the result benchmarks well against unconstrained sparse spike inversion. Due to the ease of use of the application and robust result the SCI method is simple to implement as part of a standard interpretation workflow and has been used by ConocoPhillips Indonesia to invert carbonate and clastic reservoirs across the region. Two case studies are presented in this paper. SCI was applied to full stack and offset cube seismic reflection data over the Belida Field, West Natuna as part of a major reservoir characterisation study of this mature oil field. Due to the fast track nature of the project this approach was preferred to a more quantitative seismic inversion method. The resultant full stack coloured impedance volume has been loaded directly into the geological model and used as a guide to facies distributions away from well control. The coloured impedance volume was also used in a calibration of well data to multi attribute seismic data (including Pre-Stack Inversion attributes) to derive Vshale and had one of the highest correlation coefficients of any of the attributes to Vshale. An example from carbonate reservoirs, offshore East Java is also presented. This project is again a fast track interpretation and the SCI has provided a volume that has significantly reduced interpretation time as reflectors are more laterally continuous than the reflectivity volume and can thus be auto-picked to a greater extent. In addition, as the volume is layer based, changes in relative impedance can be correlated directly to changes in facies.
机译:彩色地震反演(SCI)是一种将地震反射数据从界面属性转换为基于图层的属性的简单,快速且经济高效的方法。该过程将创建一个体积,该体积相对于反射数据旋转90度,并且其振幅谱在总体上与测井阻抗相匹配。该过程的结果是相对阻抗地震体,实际上已经根据幅度和频率将其整形为井数据。另外,不需要小波估计,并且尽管不使用解释性低频模型,但是该技术提供了一种可靠的反演,该反演遵循了可用井数据的阻抗趋势。该过程可由非专业的地震解释人员执行,执行速度非常快,并且结果基准可很好地应对无约束的稀疏峰值反演。由于该应用程序的易用性和可靠的结果,SCI方法易于作为标准解释工作流程的一部分实施,并且被ConocoPhillips Indonesia用来在整个地区内反转碳酸盐岩和碎屑岩储层。本文介绍了两个案例研究。将SCI应用于西Natuna的Belida油田的全叠加和偏移立方地震反射数据,作为该成熟油田主要储层特征研究的一部分。由于该项目具有快速跟踪的性质,因此该方法优于定量地震反演方法。所产生的全堆有色阻抗体积已直接加载到地质模型中,并被用作远离井控范围的相分布的指南。彩色阻抗体积还用于校准井数据到多属性地震数据(包括叠前反演属性)以得出Vshale,并且具有与Vshale任意属性相关的最高相关系数之一。还提供了一个以碳酸盐岩储层为例的东爪哇海岸。该项目还是一种快速通道解释方法,SCI提供的体积大大缩​​短了解释时间,因为反射器在横向上比反射率体积更连续,因此可以在更大程度上进行自动拾取。另外,由于体积是基于层的,所以相对阻抗的变化可以直接与相的变化相关。

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