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Accurate Seismic Imaging Methods on Complex Fault Blocks of Subei Basin

机译:苏北盆地复杂断块的精确地震成像方法

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Subei basin is well-known for its complex fault block reservoirs and has wide growth of shallow igneous rocks. These inherent geological characteristics seriously affect the accurate seismic imaging of target layers. Pre-stack depth migration is an effective imaging method for complex structure and velocity field zones. In order to verify nice imaging ability of Kirchhoff's pre-stack depth migration (KPSDM) and reverse-time migration (RTM), imaging tests were carried out based on the velocity model for complex fault block of igneous area in Subei basin. Experimental results showed that under the condition of reliable high-frequency velocity field, RTM had obvious advantage in imaging of fault blocks, otherwise, KPSDM was a viable option. In order to verify above experimental results, by selecting seismic data with higher signal to noise ratio (SNR), a reliable high-frequency velocity field was established, and the imaging processing was carried out. The results showed that RTM has obvious advantage over KPSDM in the aspect of improving imaging results of fault blocks and target layers under igneous rocks. Therefore, the choosing of imaging methods for complex fault blocks with igneous zone depends on SNR of seismic data. If seismic data has high SNR, a more accurate high frequency velocity field can be set up. Thus RTM can achieve precise imaging for target layers. If the seismic data has low SNR, KPSDM will become a good choice.
机译:苏北盆地以其复杂的断层块储层而闻名,浅层火成岩具有广泛的增长。这些固有的地质特征严重影响了目标层的准确地震成像。叠前深度偏移是一种用于复杂结构和速度场区域的有效成像方法。为了验证基尔霍夫叠前深度偏移(KPSDM)和逆时偏移(RTM)的良好成像能力,基于速度模型对苏北盆地火成岩区复杂断块进行了成像测试。实验结果表明,在可靠的高频速度场条件下,RTM在断块成像中具有明显的优势,否则,KPSDM是可行的选择。为了验证上述实验结果,通过选择具有较高信噪比(SNR)的地震数据,建立了可靠的高频速度场,并进行了成像处理。结果表明,在改善火成岩下断块和目标层成像效果方面,RTM优于KPSDM。因此,火成岩带复杂断块成像方法的选择取决于地震数据的信噪比。如果地震数据具有高SNR,则可以建立更准确的高频速度场。因此,RTM可以实现目标层的精确成像。如果地震数据的信噪比较低,则KPSDM将成为一个不错的选择。

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