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Towards quantitative evaluation of gas injection using time-lapse seismic data

机译:利用时移地震数据进行注气定量评估

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Of particular concern in the monitoring of gas injection for the purposes of storage, disposal or improved oil recovery is the exact spatial distribution of the gas volumes in the subsurface. In principle this requirement is addressed by the use of 4D seismic data, although it is recognized that the seismic response still largely provides a qualitative estimate of moved subsurface fluids. Exact quantitative evaluation of fluid distributions and associated saturations remains a challenge to be solved. Here, an attempt has been made to produce mapped quantitative estimates of the gas volume injected into a clastic reservoir. Despite good results using three accurately repeated seismic surveys, time-delay and amplitude attributes reveal fine-scale differences though large-scale agreement in the estimated fluid movement. These differences indicate disparities in the nature of the two attributes themselves, which can be explained by several possible causes. Of most impact are the effects of processing and migration, wave interference effects and noise from non-repeatability of the seismic surveys. This subject highlights the need for a more careful consideration in 4D acquisition, amplitude processing and use of true amplitude preserving attributes in quantitative interpretation.
机译:在监测用于存储,处置或改善油采收率的注气中,地下气体体积的确切空间分布是特别值得关注的。原则上,通过使用4D地震数据可以满足这一要求,尽管人们认识到地震响应仍然在很大程度上提供了对地下运动流体的定性估计。对流体分布和相关饱和度进行准确的定量评估仍然是要解决的挑战。在这里,已经尝试产生映射到碎屑储层中的气体体积的定量映射估计。尽管使用三个精确重复的地震勘测获得了良好的结果,但时延和振幅属性显示出细小的尺度差异,尽管在估计的流体运动方面存在大规模的一致性。这些差异表明这两个属性本身的性质存在差异,可以用几种可能的原因来解释。影响最大的是加工和迁移的影响,波干扰影响以及地震勘测不可重复性产生的噪声。本主题强调了在4D采集,幅度处理以及在定量解释中使用真实的幅度保留属性时需要更仔细考虑的需要。

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