首页> 外文期刊>Canadian journal of earth sciences >Reprocessing legacy three-dimensional seismic data from the Halfmile Lake and Brunswick No. 6 volcanogenic massive sulphide deposits, New Brunswick, Canada
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Reprocessing legacy three-dimensional seismic data from the Halfmile Lake and Brunswick No. 6 volcanogenic massive sulphide deposits, New Brunswick, Canada

机译:从半毛绒湖和不伦瑞克第6次火山油大规模硫化物矿床中重新处理传统三维地震数据,加拿大新不伦瑞克

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We reprocessed legacy three-dimensional (3D) seismic data from the Halfmile Lake and Brunswick areas, both of which were acquired for mineral exploration in the Bathurst Mining Camp, New Brunswick. Each 3D seismic survey was acquired over known volcanogenic massive sulphide deposits and covered areas with strong mineral potential. Most improvements resulted from a reduction of coherent and random noise on prestack gathers and from an improved velocity model, combined with re-imaging with dip moveout corrections and poststack migration or prestack time migration. At Halfmile Lake, the new imaging results show the Deep zone and a possible extension of the sulphide mineralization at greater depth. True amplitude processing has shown that this anomaly has strong amplitudes and is offset from the Deep zone by a shallowly dipping fault (<15 degrees). With the clearer geological context provided by our results, this anomaly, which appears as a stand-alone anomaly on an original image obtained by Noranda Exploration Ltd., becomes a defendable exploration target. Nonorthogonal acquisition geometry and receiver patches of the Brunswick No. 6 3D seismic survey generated artefacts after dip moveout processing that reduced the overall quality of the seismic volumes. By using a filtering approach based on the application of a weighted Laplacian-Gaussian filter in the Kx-Ky domain, we reduced the noise and improved the continuity of reflections. We also imaged the short and flat reflections observed previously only in the shallow part of prestack time migrated data. These short reflections appear as diffractions on the filtered stacked section with dip moveout corrections, indicating that they originate from small geological bodies or discontinuities in the subsurface.
机译:我们从Halfile Lake和Brunswick地区进行了重新处理的传统立体(3D)地震数据,这两者都被收购用于新不伦瑞克的洗浴营营地的矿物勘探。每个3D地震测量都是通过已知的受体硫化物沉积物和具有强矿物潜力的覆盖区域获得的。大多数改进由Prestack集中的连贯和随机噪声的减少和从改进的速度模型进行了减少,结合了与DIP MoveOut校正和后攻击迁移或Prestack时间迁移的重新成像。在半毛利湖,新的成像结果显示深度区域和硫化物矿化的可能延伸。真正的幅度处理表明,这种异常具有强大的振幅,并且通过浅倾翻故障(<15度)偏离深区。通过我们的结果提供的更清晰的地质背景,这种异常在诺兰达勘探有限公司获得的原始图像上表现为独立的异常,成为一个可辩护的勘探目标。不正常的采集几何和接收器贴片的不伦瑞克号6D震动调查在浸入震动处理之后产生的伪距,降低了地震卷的整体质量。通过使用基于KX-KY域中的加权LAPLACIAN-GASSIS滤波器的应用方法,我们降低了噪声并提高了反射的连续性。我们还在预先在Prestack时间迁移数据的浅部分中观察到的短和平面反射。这些短反射出现在过滤的堆叠部分上的衍射,具有倾角换档校正,表明它们来自地下的小地质体或不连续性。

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