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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Deep reflection seismic imaging in SE Poland using extended correlation method applied to PolandSPAN (TM) data
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Deep reflection seismic imaging in SE Poland using extended correlation method applied to PolandSPAN (TM) data

机译:使用扩展相关方法将波兰SE(SE Poland)的深反射地震成像应用于PolandSPAN(TM)数据

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Here I apply the extended correlation technique to a 156-km long regional seismic profile, PL1-5100, from the PolandSPAN (TM) survey located in SE Poland. This method allows the extension of the nominal record length of the survey (12 s in this case) to much longer times (22 s tested here), given that in the field the raw uncorrelated data were stored and a broadband sweep was used. Processing of the ground force correlated data compared to pilot sweep correlated one produced qualitatively similar results. Based on the consistency of the ground force measured along the profile, data were correlated with the mean of the ground force estimates. Results of the processing were validated against the coincident wide-angle reflection/refraction (WARR) profile (CELEBRATION 2000 CEL05 profile) and a deep reflection profile located further to the SE (POLCRUST-01 profile). I found a good correspondence between the wide-angle Moho signature and the near-vertical incidence (NVI) Moho reflectivity, both in terms of the depth and the reflection strength, with the exception of the area of the crustal keel (Moho >50 km) interpreted from the WARR data, where the NVI reflectivity is observed at depth ca. 47 km. Similarly to POLCRUST-01, line PL1-5100 is portraying the attenuated crust of the East European Platform margin with the dipping crystalline basement down to ca. 20 km depth and the reflective lower crust. Two important fault zones: lzbica-Zamosc Fault and Wilczopole Fault Zone are interpreted as the deeply-rooted crustal features, but there is no evidence for the Teisseyre-Tomquist Zone itself. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这里,我将扩展的相关技术应用到位于SE波兰的156公里长的区域地震剖面PL1-5100中。这种方法允许将调查的标称记录长度(在这种情况下为12 s)延长到更长的时间(在此测试为22 s),因为在现场存储了原始的不相关数据并使用了宽带扫描。与飞行员扫掠相比,与地面力相关的数据的处理使定性结果相似。根据沿剖面测得的地面力的一致性,将数据与地面力估计值的平均值相关联。针对重合的广角反射/折射(WARR)轮廓(CELEBRATION 2000 CEL05轮廓)和更靠近SE的深反射轮廓(POLCRUST-01轮廓)验证了处理结果。我发现广角莫霍面特征和近垂直入射(NVI)莫霍面反射率在深度和反射强度方面都有很好的对应关系,但地壳龙骨面积(莫霍面> 50 km )由WARR数据解释,其中在深度ca观察到NVI反射率。 47公里与POLCRUST-01相似,PL1-5100行描绘的是东欧平台边缘的地壳衰减,而结晶基底的倾角下降到了大约200摄氏度。 20公里深度和反射性下地壳。两个重要的断层带:lzbica-Zamosc断层和Wilczopole断层带被解释为根深蒂固的地壳特征,但是没有证据表明Teisseyre-Tomquist带本身。 (C)2016 Elsevier B.V.保留所有权利。

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