水平循环抽水井以减少咸水的上升:越南热带稀树草原气候宁顺地区的水资源开发措施

IF 0.6 Q4 ENGINEERING, GEOLOGICAL
Ван Хоанг Нгуен, Хоа Ту Тинь, Ренат Белалович Шакиров, Надежда Сергеевна Сырбу, Тхи Тхуи Хуонг Тран, Наталья Сергеевна Ли
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引用次数: 0

摘要

引用链接:Nguyen Van Hoang, Trinh Hoai Thu, Shakirov R.B, sybu N.S, Tran Thi Thuy Huong, Lee N.S.水平循环抽水井以减少咸水的流入:热带稀树草原气候的水资源开发措施,越南宁顺地区。托木斯克理工大学公报。岩土工程Аssets, 2023,第334卷,第2期。4,рр.209 - 220。俄文。的相关性。越南中南部地区,包括宁顺省,属于热带稀树草原气候,一直遭受严重的干旱和水盐碱化。近年来,由于极端天气的频率和强度增加、水资源短缺和地下水盐度升高,宁顺省面临着严重的干旱。宁顺平原淡水咸水分布有3个带:1)全剖面淡水带;2)上剖面为淡水区,下剖面为咸水区,3)全剖面为咸水区。第一区地下水抽取设施易受周边咸水的盐化,第二区地下水抽取设施易受下方来袭咸水的影响。目的:确定给定水位下降情况下的最佳地下水抽水方式,表明水平圆形井是最大限度减少咸水上升的最佳方式,确定咸水上升高度与水平圆形井半径之间的关系。研究对象:热带稀树草原气候,沿海平原,淡水咸水,上淡水下咸水的含水层,地下水循环井,咸水上涌。方法:采用有限元法、动态规划法、达干-贝尔咸水上涌模型、多抽点叠加原理进行咸水上涌总体识别。结果。分析了不同半径的直井和水平循环井抽井方案对咸水上采的影响。测定各方案生理盐水上升高度的时间。得到了水平循环井上咸水时间与循环井半径关系的极好回归曲线。分析结果在最小化咸水上涌方面对井的设计非常有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HORIZONTAL CIRCULAR PUMPING WELLS TO MINIMIZE SALINE WATER UPCONING: WATER RESOURCE DEVELOPMENT MEASURE FOR TROPICAL SAVANNA CLIMATIC NINH THUAN AREA, VIETNAM
Link for citation: Nguyen Van Hoang, Trinh Hoai Thu, Shakirov R.B., Syrbu N.S., Tran Thi Thuy Huong, Lee N.S. Horizontal circular pumping wells to minimize saline water upconing: water resource development measure for tropical savanna climatic Ninh Thuan area, Vietnam. Bulletin of the Tomsk Polytechnic University. Geo Аssets Engineering, 2023, vol. 334, no. 4, рр.209-220. In Rus. The relevance. The Southern central region of Vietnam, including Ninh Thuan province, has a tropical savanna climate and has been heavily suffering from drought and water salinization. Ninh Thuan province has faced severe droughts in recent years because of the increase of the frequency and intensity of extreme weather conditions, the water scarcity, and the salinity of the groundwater. The distribution of fresh and saline groundwater in Ninh Thuan plain has three zones: 1) zone of entire profile with fresh groundwater; 2) zone of the upper profile's with fresh groundwater and of the lower profile's with saline groundwater, and 3) zone of entire profile with saline groundwater. The groundwater abstraction facilities in the first zone are vulnerable to salinization from surrounding saline water, while in the second zone are vulnerable to the upconing saline water from below. The aim: to determine the optimal groundwater pumping in respect to given water level drawdown, to show that the horizontal circular wells are the best for minimization of saline water upconing, to determine the relationship between the saline water upconing height and the radii of the horizontal circular wells.  Objects: tropical savanna climate, coastal plain, fresh and saline groundwater, aquifer with fresh water in the upper profile and saline water in the lower profile, circular groundwater wells, saline water upconing. Methods: finite element method, dynamic programming, Dagan–Bear model of saline water upconing, superimposition principle in dealing with multiple pumping points for identification of overall saline water upconing. Results. Different schemes of pumping fields with either vertical wells or horizontal circular wells with different radii were analyzed for saline water upconing. The time of saline upconing height in all the alternative schemes were determined. A very well regression curve of the relationship between the time saline water upconing to the horizontal circular wells and the circular well radii was obtained. The analysis results are extremely useful supporting well design in terms of minimization of saline water upconing.
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