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Approach to Focusing the SMS Potential Area using High-Resolution Seismic Surveys

机译:利用高分辨率地震勘探聚焦SMS潜在区域的方法

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Multi-stage high-resolution seismic survey system has been developed to explore Seafloor Massive Sulfides (SMS) deposits. The authors demonstrated the feasibility of this system around offshore west Kume Island, Okinawa Trough. In the first stage, a deep-towed streamer (ACS; Autonomous Cable Seismic) was used at the survey area about tens of square kilometers. After the ACS, a ZVCS (Zero-offset Vertical Cable Seismic) survey was carried out in a more limited area within several square kilometers. A vertical hydrophone array is one of the key components of ZVCS in order to suppress noises caused by side reflections. The conventional VSP data processing techniques such as wave field separation and stacking can be applied to the data obtained by this system. Subsequently, 3DVCS (Three-Dimensional Vertical Cable Seismic) was deployed to obtain a 3D image of subsurface structures with high-resolution. Result of ACS survey gave us an opportunity to interpret characteristic seismic facies around the hydrothermally active area. High quality seismic sections acquired by ZVCS made it possible to image the complex shallow structures. The 3D seismic volume after pre-stack depth migration using 3DVCS data made us capable of interpreting three dimensional structures and tracking the key reflectors of SMS.t.
机译:已开发出多级高分辨率地震勘探系统,以勘探海底块状硫化物(SMS)矿床。作者证明了该系统在冲绳海槽西久米岛近海附近的可行性。在第一阶段,在调查面积约数十平方公里的地方使用了拖缆(ACS; Autonomous Cable Seismic)。 ACS之后,在几平方公里内的更有限区域内进行了ZVCS(零偏移垂直电缆地震)勘测。垂直水听器阵列是ZVCS的关键组件之一,目的是抑制由侧面反射引起的噪声。诸如波场分离和叠加之类的常规VSP数据处理技术可以应用于由该系统获得的数据。随后,部署了3DVCS(三维垂直电缆地震)以高分辨率获得地下结构的3D图像。 ACS调查的结果使我们有机会解释热液活动区周围的特征性地震相。 ZVCS采集的高质量地震剖面使得对复杂的浅层结构成像成为可能。使用3DVCS数据进行叠前深度偏移后的3D地震体积使我们能够解释三维结构并跟踪SMS.t的关键反射器。

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