首页> 外文期刊>Global and planetary change >A systematic overview of the coincidences of river sinuosity changes and tectonically active structures in the Pannonian Basin
【24h】

A systematic overview of the coincidences of river sinuosity changes and tectonically active structures in the Pannonian Basin

机译:系统地概述了潘诺尼盆地的河流弯曲度变化与构造活动结构的重合性

获取原文
获取原文并翻译 | 示例
       

摘要

As tectonic movements change the valley slope (low-gradient reaches of valleys, in sedimentary basins), the alluvial rivers, as sensitive indicators, respond to these changes, by varying their courses to accommodate this forcing. In our study sinuosity values, a commonly used characteristic parameter to detect river pattern changes, were studied for the major rivers in the Pannonian Basin in order to reveal neotectonic influence on their planform shape. Our study area comprises the entire Pannonian Basin (330,000 km2) located in eastern Central-Europe, bounded by the Alps, Carpathians and Dinarides. The studied rivers were mostly in their natural meandering state before the main river regulations of the 19th century. The last quasi-natural, non-regulated river plan-forms were surveyed somewhat earlier, during the Second Military Survey of the Habsburg Empire. Using the digitized river sections of that survey, the sinuosities of the rivers were calculated with different sample section sizes ranging from 5 km to 80 km. Depending on the bank-full discharge, also a 'most representative' section size is given, which can be connected to the neotectonic activity. In total, the meandering reaches of 28 rivers were studied; their combined length is 7406 km. The places where the river sinuosity changed were compared to the structural lines of the "Atlas of the present-day geodynamics of the Pannonian Basin" (Horvath et al., 2006). 36 junctions along 26 structural lines were identified where the fault lines of this neotectonic map crossed the rivers. Across these points the mean sinuosity changed. Depending on the direction of the relative vertical movements, the sinuosity values increased or decreased. There were some points, where the sinuosity changed in an opposite way. Along these sections, the rivers belong to the range of unorganized meandering or there are lithological margins. Assuming that the rivers indicate on-going faulting accurately, some places were found, where positioning of the faults of the neotectonic map could be improved according to the sinuosity jumps. However, some significant sinuosity changes cannot be correlated to known faults. In these cases other factors may play a role (e.g., hydro-logical changes, increase of sediment discharge also can modify sinuosity). In order to clarify the origin of these changes seismic sections and other geodynamical information should be analyzed to prove or disprove tectonic relationship if hydrological reasons can be excluded.
机译:随着构造运动改变山谷的坡度(沉积盆地中山谷的低梯度河段),冲积河流作为敏感的指标通过改变其路线以适应这种压力来响应这些变化。在我们的研究中,研究了Pannonian盆地主要河流的通常用于检测河流格局变化的特征参数,以揭示新构造对其平面形状的影响。我们的研究区域包括位于中欧东部的整个Pannonian盆地(33万平方公里),以阿尔卑斯山,喀尔巴阡山脉和Dinarides为界。在19世纪主要河流法规之前,所研究的河流大多处于自然曲折状态。在哈布斯堡帝国第二次军事调查期间,较早地对最后一种准自然,不受管制的河流平面图进行了调查。使用该调查的数字化河段,可计算出5 km至80 km范围内不同样本断面大小的河道弯曲度。取决于堆满放电,还给出了“最具代表性”的断面尺寸,可以将其与新构造活动联系起来。总共研究了28条河流的曲折河段。它们的总长度为7406公里。将河床弯曲度变化的地方与“ Pannonian盆地当今地球动力学地图集”的结构线进行了比较(Horvath等,2006)。在该新构造图的断层线穿过河流的地方,确定了沿着26条结构线的36个交界处。在这些点上,平均弯曲度发生了变化。取决于相对垂直运动的方向,弯曲度值增大或减小。在某些方面,弯曲度以相反的方式变化。沿这些部分,河流属于无组织曲折的范围,或有岩性边缘。假设河流能准确地指示正在进行的断层,则发现了一些地方,可以根据弯曲度来改善新构造图的断层位置。但是,某些明显的正弦变化不能与已知的断层相关。在这些情况下,其他因素也可能起作用(例如,水文变化,沉积物排放量的增加也可以改变波纹度)。为了弄清这些变化的起因,如果可以排除水文原因,则应分析地震剖面和其他地球动力学信息以证明或反对构造关系。

著录项

  • 来源
    《Global and planetary change》 |2012年第12期|p.109-121|共13页
  • 作者单位

    Department of Geophysics and Space Sciences, Eoetvoes University, Budapest, Hungary,Water Management Research Group of the Hungarian Academy of Sciences, Budapest, Hungary;

    Department of Geophysics and Space Sciences, Eoetvoes University, Budapest, Hungary,Institute of Photogrammetry and Remote Sensing, Vienna University of Technology, Vienna, Austria;

    Department of Geophysics and Space Sciences, Eoetvoes University, Budapest, Hungary;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pannonian basin; sinuosity; rivers; neotectonics; classification;

    机译:潘诺尼盆地弯曲度河流新构造分类;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号