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井田附近含水层与河网的相互作用。

Interaction of Aquifer and River-Canal Network near Well Field.

作者信息

Ghosh Narayan C, Mishra Govinda C, Sandhu Cornelius S S, Grischek Thomas, Singh Vikrant V

机构信息

WRD& M, Indian Institute of Technology, Roorkee 247667, India.

Faculty of Civil Engineering and Architecture, Dresden University of Applied Sciences, Dresden 01069, Germany.

出版信息

Ground Water. 2015 Sep-Oct;53(5):794-805. doi: 10.1111/gwat.12274. Epub 2014 Oct 7.

Abstract

The article presents semi-analytical mathematical models to asses (1) enhancements of seepage from a canal and (2) induced flow from a partially penetrating river in an unconfined aquifer consequent to groundwater withdrawal in a well field in the vicinity of the river and canal. The nonlinear exponential relation between seepage from a canal reach and hydraulic head in the aquifer beneath the canal reach is used for quantifying seepage from the canal reach. Hantush's (1967) basic solution for water table rise due to recharge from a rectangular spreading basin in absence of pumping well is used for generating unit pulse response function coefficients for water table rise in the aquifer. Duhamel's convolution theory and method of superposition are applied to obtain water table position due to pumping and recharge from different canal reaches. Hunt's (1999) basic solution for river depletion due to constant pumping from a well in the vicinity of a partially penetrating river is used to generate unit pulse response function coefficients. Applying convolution technique and superposition, treating the recharge from canal reaches as recharge through conceptual injection wells, river depletion consequent to variable pumping and recharge is quantified. The integrated model is applied to a case study in Haridwar (India). The well field consists of 22 pumping wells located in the vicinity of a perennial river and a canal network. The river bank filtrate portion consequent to pumping is quantified.

摘要

本文提出了半解析数学模型,以评估:(1)渠道渗漏的增强情况;(2)在靠近河流和渠道的井场进行地下水抽取时,无压含水层中部分穿透河流引起的诱导水流。利用渠道段渗漏与渠道段下方含水层水头之间的非线性指数关系来量化渠道段的渗漏。汉图什(1967年)在无抽水井情况下矩形漫流盆地补给导致地下水位上升的基本解,用于生成含水层地下水位上升的单位脉冲响应函数系数。应用杜哈梅尔卷积理论和叠加法,得出不同渠道段抽水和补给引起的地下水位位置。亨特(1999年)在部分穿透河流附近的井持续抽水导致河流枯竭的基本解,用于生成单位脉冲响应函数系数。应用卷积技术和叠加法,将渠道段的补给视为通过概念注入井的补给,量化可变抽水和补给导致的河流枯竭。该综合模型应用于印度哈里瓦的一个案例研究。井场由位于常年河流和运河网络附近的22口抽水井组成。对抽水后河岸滤层部分进行了量化。

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