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INTERCEPTOR DRAINAGE MODELLING TO MANAGE HIGH GROUNDWATER TABLE ON THE ABYEK PLAIN, IRAN

机译:拦截器排水模型,用于管理伊朗阿比耶克平原上的高地下水位

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摘要

High groundwater tables and soil salinity are a serious threat to agricultural areas, especially on the Abyek Plain, Iran. An interceptor drainage system was installed to lower the groundwater head and control soil salinity. Simulation is an appropriate approach to investigate possible groundwater behaviour in future conditions and to explore suitable designs for implementation. Ninety-nine observation wells were installed around the interceptor drainage system in the Abyek Plain to monitor groundwater movement and salinity changes. Groundwater table fluctuation was measured monthly for 3 years from December 2010 until January 2014. A MODFLOW model was calibrated for the study area using the data measured through the observation wells. Assessment of the measured values indicated that the groundwater head was lowered within the 3 years due to the installation of the system. A calibrated model was applied to predict the future conditions of groundwater levels and suggest proper designs. Groundwater level drawdowns were predicted at approximately 1.3 and 1.5m for August 2018 and August 2025, respectively. The results also revealed that with the installation of additional parallel interceptor drainage at a distance of 1000m from the existing drainage, the groundwater table could be lowered in a large area of the plain. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:地下水位高和土壤盐分高,对农业地区构成严重威胁,尤其是在伊朗阿比耶克平原上。安装了拦截器排水系统以降低地下水位并控制土壤盐度。模拟是研究未来条件下可能的地下水行为并探索适合实施的合适方法。在阿卜耶克平原的拦截器排水系统周围安装了九十九个观察井,以监测地下水的运动和盐度的变化。从2010年12月到2014年1月,连续3年每月测量一次地下水位波动。使用通过观测井测得的数据对研究区域进行MODFLOW模型校准。对测量值的评估表明,由于系统的安装,地下水位在3年内降低了。使用校准的模型来预测地下水位的未来状况并提出适当的设计。预计2018年8月和2025年8月的地下水位下降分别约为130万和150万。结果还表明,在距现有排水系统1000m处安装附加的平行拦截排水系统,可以在平原的大面积区域降低地下水位。版权所有(C)2016 John Wiley&Sons,Ltd.

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