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Offshore seismic reflection data: an oceanographic perspective

机译:离岸地震反射数据:海洋学视角

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Recent studies have demonstrated that offshore seismic reflection data can be used to detect boundaries in the water column. This novel approach, called "seismic oceanography", has produced clear pictures of water mass interfaces (i.e., thermoclines, internal waves, fronts, eddies) in different oceanic environments. As the study of ocean circulation requires an extensive spatial and temporal coverage of observations, the possibility of using seismic data available from industrial or academic investigations to support and enhance oceanographic surveys seems very challenging. Since the Southern Ocean represents a key study area for climate due to the deep water formation process which triggers the Global Thermohaline Circulation, we began to reprocess seismic lines recently acquired off Wilkes Land (east Antarctica) in the framework of the WEGA project, to investigate the presence of reflections in the seawater column. A first evaluation of the possibility of recognizing fine structures in the water column is positive: seismic lines acquired along the Wilkes Land continental margin show signals correlated with boundaries inferred by conventional oceanographic measurements.
机译:最近的研究表明,海上地震反射数据可用于检测水柱边界。这种被称为“地震海洋学”的新颖方法,可以清晰地显示出不同海洋环境中的水团界面(即跃层,内波,前缘,涡流)。由于海洋环流研究需要广泛的时空观测资料,因此使用从工业或学术研究中获得的地震数据来支持和加强海洋学调查的可能性似乎非常具有挑战性。由于深水形成过程触发了全球热盐环流,因此南大洋成为气候的重要研究区域,因此我们开始在WEGA项目框架内对最近在Wilkes Land(南极东部)获得的地震线进行重新处理,以进行调查。海水柱中存在反射。对识别水柱中精细结构的可能性的第一个评估是肯定的:沿着威尔克斯土地大陆边缘采集的地震线显示出与常规海洋学测量推断出的边界相关的信号。

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