印度马哈拉施特拉邦Nandurbar地区岩脉群地下非均质性空间变化及其地下水勘探应用

Khan Tahama , Arti Baride , Gautam Gupta , Vinit C. Erram , Mukund V. Baride
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引用次数: 3

摘要

为了了解Maharashtra Nandurbar地区部分地区含水层的保护能力、各向异性性质和堤防布满地形的裂缝几何形状,使用斯伦贝谢配置获取了39个垂直电测深数据。分析表明研究区发育3-5层状构造。此外,利用每个测点的电阻率和层厚计算Dar-Zarrouk和其他地电指数。采用逆距离加权(IDW)算法对数据进行空间插值。纵向电导值表明该地区的含水层保护能力较差至中等,表明较弱的区域可能容易渗透污染物。高电性各向异性(λ)表示东向和南向岩脉,表明地下具有非均质性和各向异性。λ与裂缝孔隙度的直接关系表明孔隙介质是多孔的。首次在该地区使用的IDW算法提供了准确可靠的空间分布和潜在异质性估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial variation of sub-surface heterogenieties within the dyke swarm of Nandurbar region, Maharashtra, India, for groundwater exploration using Inverse Distance Weighted technique

To understand the protective capacity of aquifers, anisotropic nature and fracture geometry of dyke infested terrain in parts of Nandurbar region, Maharashtra, data from 39 vertical electrical soundings using Schlumberger configuration were acquired. Analysis suggests 3–5 layered structure in the study area. Further, the Dar-Zarrouk and other geoelectric indices were computed utilizing resistivity and layer thickness at each station. The Inverse Distance Weighted (IDW) algorithm was used to interpolate data spatially. Longitudinal conductance values suggest that the area has poor to moderate aquifer protective capacity, indicating that weaker zones may be prone to infiltrating contaminants. The high electrical anisotropy (λ) signifies EW and NS oriented dykes, suggesting heterogeneous and anisotropic nature of the subsurface. A direct relationship involving λ and fracture porosity indicate porous medium. The IDW algorithm, used for the first time in this region, provided an accurate and reliable estimate of spatial distribution and the underlying heterogeneities.

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