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首页> 外文期刊>Journal of Applied Geophysics >Seismic reflection constraints on the glacial dynamics of Johnsons Glacier, Antarctica
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Seismic reflection constraints on the glacial dynamics of Johnsons Glacier, Antarctica

机译:地震反射对南极约翰逊冰川冰川动力学的约束

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During two Antarctic summers (1996-1997 and 1997-1998), five seismic refraction and two reflection profiles were acquired on the Johnsons Glacier (Livingston Island, Antarctica) in order to obtain information about the structure of the ice. characteristics of the ice-bed contact and basement topography. An innovative technique has been used for the acquisition of reflection data to optimise the field survey schedule. Different shallow seismic sources were used during each field season: Seismic Impulse Source System (SISSY) for the first field survey and low-energy explosives (pyrotechnic noisemakers) during the second one. A comparison between these two shallow seismic sources has been performed, showing that the use of the explosives is a better seismic source in this ice environment. This is one of the first studies where this type of source has been used. The analysis of seismic data corresponding to one of the reflection profiles (L3) allows us to delineate sectors with different glacier structure (accumulation and ablation zones) without using glaciological data. Moreover, vertical discontinuities were detected by the presence of back-scattered energy and the abrupt change in frequency content of first arrivals shown in shot records. After the raw data analysis, standard processing led us to a clear seismic image of the underlying bed topography. which can be correlated with the ice flow velocity anomalies. The information obtained from seismic data on the internal structure of the glacier, location of fracture zones and the topography of the ice-bed interface constrains the glacial dynamics of Johnsons Glacier. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 23]
机译:在两个南极夏季(1996-1997年和1997-1998年),在约翰逊冰川(南极洲利文斯顿岛)上获得了五个地震折射和两个反射剖面,以便获得有关冰结构的信息。冰床接触和地下室地形的特征。一种创新技术已用于获取反射数据,以优化现场勘测计划。每个野外季节使用了不同的浅层地震源:第一次野外勘测使用地震脉冲源系统(SISSY),第二次野外调查使用低能量炸药(烟火噪声产生器)。对这两个浅地震源进行了比较,表明在这种冰环境中使用炸药是更好的地震源。这是最早使用这种来源的研究之一。对对应于其中一个反射剖面(L3)的地震数据的分析使我们能够在不使用冰川学数据的情况下描绘出具有不同冰川结构(积聚和消融带)的扇形。此外,垂直不连续性是通过存在反向散射能量和镜头记录中所示的首次到达的频率含量的突然变化来检测的。经过原始数据分析后,标准处理使我们获得了底层床形的清晰地震图像。这可能与冰流速异常有关。从地震数据中获得的有关冰川内部结构,断裂带位置和冰床界面地形的信息,限制了约翰逊冰川的冰川动力学。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:23]

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