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The usefulness of ground-penetrating radar images for the research of a large sand-bed braided river: case study from the Vistula River (central Poland)

机译:探地雷达图像在研究大型沙床辫状河中的实用性:以维斯杜拉河为例(波兰中部)

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摘要

Ground-penetrating radar (GPR) surveys and sedimentological outcrop analyses were combined in order to determine the reflection patterns and internal architecture of terrace deposits of the Vistula River at Kępa Zawadowska in the southern part of Warsaw (central Poland). The sedimentary analyses concerned the granulometric composition and lithofacies analysis. The 34 GPR profiles, which were obtained in two outcrops, using a Malå RAMAC/GPR system with 500-MHz and 250-MHz shielded antennas, were up to 100 m long. The most characteristic ground-penetrating radar profiles are presented; they show a high-resolution data set of radar facies. The GPR data suggest the presence of three geophysically different units, namely with high-angle inclined reflections (radar facies 1), with discontinuous undulating or trough-shaped reflections (radar facies 2), and with low-angle reflections (radar facies 3). The internal structure of the fluvial deposits was obtained by integration of the GPR and sedimentological data, which combination provides a more accurate visualisation of sedimentary units than do reconstructions that are based only on standard lithologic point data.
机译:为了确定华沙南部(波兰中部)KępaZawadowska的维斯瓦河阶地沉积物的反射模式和内部构造,结合了探地雷达(GPR)调查和沉积学露头分析。沉积分析涉及粒度组成和岩相分析。使用具有500-MHz和250-MHz屏蔽天线的MalåRAMAC / GPR系统在两个露头中获得的34个GPR剖面长达100 m。提出了最具特色的穿透地面雷达轮廓;他们显示了雷达相的高分辨率数据集。 GPR数据表明存在三个地球物理上不同的单位,即具有高角度倾斜反射(雷达相1),具有不连续的起伏或槽形反射(雷达相2)和低角度反射(雷达相3)。 。河流沉积物的内部结构是通过整合GPR和沉积学数据获得的,与仅基于标准岩性点数据进行的重建相比,这种组合提供了更精确的沉积单元可视化。

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