印度泰米尔纳德邦山区和河岸带含水层系统地下水补给过程的综合新方法

IF 1.7 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Aquatic Geochemistry Pub Date : 2019-10-11 DOI:10.1007/s10498-019-09357-8
Banajarani Panda, S. Chidambaram, K. Tirumalesh, N. Ganesh, C. Thivya, R. Thilagavathi, S. Venkatramanan, M. V. Prasanna, N. Devaraj, A. L. Ramanathan
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引用次数: 8

摘要

利用降雨/水位关系、地下地球物理特征、季节水化学特征和环境同位素特征等多种工具对山前和河岸带地下水补给特征进行了分析。这项拟议的研究是在印度南部Tirunelveli地区西北部的Courtallam Hills进行的。研究区为丘陵地形,山谷狭窄,坡度陡峭。通过3个测压区8 h的日水位观测和常规降水资料,评价了水位波动与降水的关系。推断RZ在储藏区起作用,并从山块和侧流中获得补给。通过对地下水季节地球化学特征的研究,确定了中西区和RZ区的补给来源。因子分析的地质统计学处理表明,沿山麓的补给过程以风化作用为主。地球物理研究表明,北部地区观测到的地下水水质良好,具有低导、高阻的特点。由于灌溉活动,研究区南部地下水电导率升高,电阻率降低。同位素示踪剂δ18O值为2.5 ~ 12.6‰,δ2H值为91.2 ~ 15.5‰。此外,还以降雨水分来源评价了地下水补给。水样的耗尽同位素含量清楚地表明,MB沿MF高海拔补给。水文地球化学和统计数据也支持这一观点,表明MB和MF区的降水对山麓含水层都提供补给,而RZ区的补给主要来自局地降水,区域流的贡献较小。
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An Integrated Novel Approach to Understand the Process of Groundwater Recharge in Mountain and Riparian Zone Aquifer System of Tamil Nadu, India

The nature of groundwater recharge along the mountain front (MF) and riparian zone (RZ) was discerned by multiple tools involving rain/water level relationship, geophysical of subsurface, seasonal hydrochemistry and environmental isotopic signatures. The proposed study has been carried out in Courtallam Hills, the north-western part of Tirunelveli District, South India. The study area is a hilly terrain with narrow valleys endowed with steep slopes. The relationship between water-level fluctuation and precipitation were evaluated by observing daily water level in 8-h interval at three piezometer zones and regular rainfall data.?It was inferred that the RZ played a role in storage zone and gets recharged from mountain block (MB) and lateral flow. The seasonal geochemistry of the groundwater was studied to determine the sources of recharge in MF and RZ. Geostatistical treatment of factor analysis revealed that weathering was the dominant recharge process along the foothill. The geophysical studies reveal good quality of groundwater observed in the northern part along with low conductance and high resistivity. The increased level of groundwater conductivity and lower resistivity was noted in southern part of the study area due to the irrigation activities. The isotopic tracers range from ??2.5 to ??12.6‰ for δ18O and from ??91.2 to ??15.5‰ for δ2H. Moreover, the groundwater recharge was evaluated by source of rainfall moisture. High-altitude recharge from MB along the MF was clearly indicated by depleted isotopic content of the water samples. It was also supported by hydrogeochemical and statistical evidences, showing that rainfall over both MB and MF zones provided the recharge to foothill aquifers, while the RZ zone was mainly recharged by local precipitation with less contribution from regional flows.

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来源期刊
Aquatic Geochemistry
Aquatic Geochemistry 地学-地球化学与地球物理
CiteScore
4.30
自引率
0.00%
发文量
6
审稿时长
1 months
期刊介绍: We publish original studies relating to the geochemistry of natural waters and their interactions with rocks and minerals under near Earth-surface conditions. Coverage includes theoretical, experimental, and modeling papers dealing with this subject area, as well as papers presenting observations of natural systems that stress major processes. The journal also presents `letter''-type papers for rapid publication and a limited number of review-type papers on topics of particularly broad interest or current major controversy.
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