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Extended Resolution by 3-D Holographic Seismic Imaging

机译:通过3-D全息地震成像进行扩展分辨率

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Holography represents a method of recording on a plane (the hologram) a pattern due to the interference of a reference beam with light diffracted from an object. When the hologram is illuminated, the entire picture of the object in three dimensional space is obtained as a virtual image. An essential principle is that a seismogram is a hologram. The understanding of this principle opens up new vistas in seismic exploration, and in particular justifies important cost saving measures in acquisition and processing methods. When a hologram is illuminated or a seismic section is migrated, each depicts the entire image of the unattainable object. Moreover, any part of the hologram also depicts the entire image of the object. The same is true in the seismic case if conventional migration is replaced by holographic seismic imaging, also known as holistic migration. Holistic migration is a process in which any part of the seismic section produces the entire image of the subsurface. Holistic methods allow wavefield images to achieve resolution beyond that predicted by conventional digital processing techniques. The image might not be quite as clear, but the same fine structure will be present. The implication is that in a seismic survey the number of shot points and detectors can be greatly reduced without adversely affecting the results. Holographic seismic imaging provides the extended resolution needed to attain a better image of the subsurface.
机译:全息图表示由于参考光束的干涉与从物体衍射的光的干涉来记录平面(全息图)的方法。当全息图被曝光时,将对象的整个图像在三维空间中作为虚拟图像获得。基本原则是地震图是全息图。理解本原则在地震勘探中开辟了新的景观,特别是在收购和加工方法中证明了重要的成本节约措施。当曝光全息图或迁移地震部分时,每个图像都描绘了无法达到的对象的整个图像。此外,全息图的任何部分还描绘了对象的整个图像。如果常规迁移被全息地震成像取代,则在地震案例中也是如此,也称为整体迁移。整体迁移是一种过程,其中地震部分的任何部分产生了地下的整个图像。整体方法允许波场图像实现超出传统数字处理技术预测的分辨率。图像可能不那么清晰,但将存在相同的精细结构。这种含义在于,在地震测量中,可以大大减少射击点和探测器的数量,而不会对结果产生不利影响。全息地震成像提供了获得更好的地下图像所需的扩展分辨率。

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