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首页> 外文期刊>Quaternary Research: An Interdisciplinary Journal >Holocene coastal morphologies and shoreline reconstruction for the southwestern coast of the Bohai Sea, China
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Holocene coastal morphologies and shoreline reconstruction for the southwestern coast of the Bohai Sea, China

机译:渤海西南沿海全新世海岸形态与海岸线重建

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Ground-penetrating radar (GPR) reflection profiles were interpreted and combined with sedimento-logical data to highlight the morpho-evolutionary history of the southwestern sector of the Bohai Sea. The internal structures in GPR images obtained near the Holocene maximum transgression boundary revealed concave-upward and onlap types of transgressive paleo-topography. The relationship between historical courses of the Yellow River and the distribution of shell ridges at three periods (6 ka, 2 ka, and recent times) showed that the concave-upward types derived from the marine sediments overlap the fluvial sediments, and the onlap types from the marine sediments cover the coastal lagoon sediments. Based on the above paleo-geographical setting, previous sea-level markers were corrected, taking into account uncertainties of their relationship to former water levels. The rates of vertical tectonic displacement, evaluated through comparison of the relative sea level (RSL) data from the GPR images and the Holocene predicted sea-level elevation, markedly affected RSL changes. The fitted RSL curves from the corrected sea-level indicators showed that the accuracy of former sea-level determinations can be improved by comparing with the maximum transgressive position of GPR detection. A topographic digital elevation model (DEM) for 6 ka is reconstructed based on the corrected data. (C) 2016 University of Washington. Published by Elsevier Inc. All rights reserved.
机译:解释了探地雷达(GPR)反射剖面并将其与沉积学数据相结合,以突出显示渤海西南地区的形态演化历史。在全新世最大海侵边界附近获得的GPR图像的内部结构揭示了海侵古地形的上凹型和上覆型。黄河历史历程与贝壳脊分布在三个时期(6 ka,2 ka和最近时期)之间的关系表明,由海洋沉积物形成的凹向上类型与河流沉积物重叠,而重叠类型来自海洋的沉积物覆盖了沿海泻湖的沉积物。根据上述古地理环境,考虑到与以前的水位关系的不确定性,对以前的海平面标志进行了校正。通过比较来自GPR图像的相对海平面(RSL)数据和全新世预测的海平面高程,评估了垂直构造位移的速率,这显着影响了RSL的变化。校正后的海平面指示器的拟合RSL曲线显示,与GPR检测的最大越位位置相比,可以提高以前海平面确定的准确性。基于校正后的数据重建6 ka的地形数字高程模型(DEM)。 (C)2016年华盛顿大学。由Elsevier Inc.出版。保留所有权利。

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