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A fast complex domain-matching pursuit algorithm and its application to deep-water gas reservoir detection

机译:快速复杂的畴匹配追踪算法及其在深水储层检测中的应用

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摘要

The main emphasis of exploration and development is shifting from simple structural reservoirs to complex reservoirs, which all have the characteristics of complex structure, thin reservoir thickness and large buried depth. Faced with these complex geological features, hydrocarbon detection technology is a direct indication of changes in hydrocarbon reservoirs and a good approach for delimiting the distribution of underground reservoirs. It is common to utilize the time-frequency (TF) features of seismic data in detecting hydrocarbon reservoirs. Therefore, we research the complex domain-matching pursuit (CDMP) method and propose some improvements. First is the introduction of a scale parameter, which corrects the defect that atomic waveforms only change with the frequency parameter. Its introduction not only decomposes seismic signal with high accuracy and high efficiency but also reduces iterations. We also integrate jumping search with ergodic search to improve computational efficiency while maintaining the reasonable accuracy. Then we combine the improved CDMP with theWigner-Ville distribution to obtain a high-resolution TF spectrum. A onedimensional modeling experiment has proved the validity of our method. Basing on the lowfrequency domain reflection coefficient in fluid-saturated porous media, we finally get an approximation formula for the mobility attributes of reservoir fluid. This approximation formula is used as a hydrocarbon identification factor to predict deep-water gas-bearing sand of the M oil field in the South China Sea. The results are consistent with the actual well test results and our method can help inform the future exploration of deep-water gas reservoirs.
机译:勘探和发展的主要重点是从简单的结构储层转移到复杂的储层,所有这些都具有复杂结构的特点,薄储层厚度和大埋深。面对这些复杂的地质特征,碳氢化合物检测技术是一种直接指示碳氢化合物储层的变化以及划定地下水库分布的良好方法。通常利用地震数据在检测烃储层中的时频(TF)特征。因此,我们研究复杂的域匹配追求(CDMP)方法,提出了一些改进。首先是引入比例参数,该参数纠正了原子波形只使用频率参数更改的缺陷。它的引言不仅以高精度和高效率分解地震信号,而且还减少了迭代。我们还通过ergodic搜索整合跳跃搜索,以提高计算效率,同时保持合理的准确性。然后我们将改进的CDMP与Wigner-Ville分布相结合以获得高分辨率TF频谱。一项对妇女造型建模实验证明了我们方法的有效性。基于流体饱和多孔介质中的低频域反射系数,我们最终得到储层流体的迁移性属性的近似公式。该近似配方用作烃识别因子,以预测南海油田的深水燃气砂。结果与实际井测试结果一致,我们的方法可以帮助未来探索深水燃气藏。

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