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Shallow sub-surface stratigraphy of interfluves inferred from vertical electric soundings in western Ganga plains, India

机译:由印度恒河平原西部垂直电测深推断的浅层地下地层

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摘要

The application of geophysical surveys such as Vertical Electric Sounding (VES) for inferring shallow subsurface stratigraphy in the vast alluvial tract of India has been under-utilized. This paper is aimed at demonstrating the potential of resistivity methods for mapping alluvial stratigraphy in parts of the Ganga plains where the availability of exposed sections is scarce and bore logs are very limited. Data was generated from 40 vertical electrical resistivity soundings in a stretch of ~ 150 km in the interfluve areas between the Ganga and Yamuna rivers and Yamuna and Betwa rivers in the western Ganga plains. Based on the available lithological data from cliff sections along the major and minor rivers draining the study area and a series of 7 drill cores along the transect, the resistivity sounding data was calibrated to interpret the sub-surface stratigraphy. The data shows the vertical extension of the valley fills and interfluve sequences down to ~ 100 m. A high-resistivity layer runs quite extensively across the interfluves and below the valley fills, interpreted as a calcrete layer that may mark a major discontinuity. Patches of very low resistivity layers in valley fills as well as interfluves suggest the presence of saline aquifers. This study demonstrates significant sub-surface heterogeneity across the interfluves, which is a manifestation of variable fluvial activity over a period in excess of 100 ka. Lateral continuity of the sandy aquifers is often broken by muddy deposits of the floodplains which form a dominant component of the interfluve sequence. Except for the locations close to major valleys, there are no major sand bodies in the upper ~ 100 m of the interfluves which suggests that the modern configuration of the valleys and interfluves in this region is of Late Quaternary antiquity. A few buried sand bodies, however, are comparable to the dimensions of the minor rivers draining the interfluve surfaces.
机译:诸如垂直电测深(VES)的地球物理勘测在推断印度广阔冲积层中浅层地下地层中的应用尚未得到充分利用。本文旨在展示电阻率法在恒河平原部分裸露地层稀缺且井眼测井非常有限的部分地区冲积地层测绘的潜力。数据是在恒河平原西部恒河和亚穆纳河之间以及亚穆纳河和贝特瓦河之间的汇合区域中,在约150 km的范围内,从40个垂直电阻率测得的。根据沿研究区排水的主要河流和次要河流的悬崖断面的可用岩性数据,以及沿横断面的一系列7个钻探岩心,对电阻率测深数据进行了校准,以解释地下地层。数据显示了低谷填充物和干扰序列的垂直延伸,低至约100 m。高电阻率层在整个界面上广泛分布,并在谷底填充物之下,这被解释为可能标志着主要不连续性的钙质层。谷底填充物和界面中极低电阻率的地层表明存在盐水层。这项研究表明,整个通气孔之间存在明显的地下异质性,这是在超过100 ka的时间内河流活动可变的表现。沙质含水层的横向连续性经常被洪泛平原的泥泞沉积物破坏,这形成了汇流层序的主要组成部分。除靠近主要河谷的位置外,在河道间〜100 m的上部没有主要的砂体,这表明该地区河道和河道的现代形态是第四纪晚期。但是,一些掩埋的砂体与排泄汇流面的小河的尺寸相当。

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  • 来源
    《Quaternary International》 |2010年第2期|p.104-115|共12页
  • 作者单位

    Department of Geophysics, Banaras Hindu University, Varanasi, India;

    rnEngineering Geosriences Group, Department of Civil Engineering, IIT Kanpur, 208016 Kanpur, UP, India;

    rnEngineering Geosriences Group, Department of Civil Engineering, IIT Kanpur, 208016 Kanpur, UP, India;

    rnDepartment of Geophysics, Banaras Hindu University, Varanasi, India;

    rnDepartment of Geophysics, Banaras Hindu University, Varanasi, India;

    rnDepartment of Geophysics, Banaras Hindu University, Varanasi, India;

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