江西省新干航电枢纽工程库区左岸系赣江河流阶地,具有典型的二元结构特征。刻画水库蓄水后二元结构库岸地下水的动态浸没过程是合理地进行库区浸没评价的前提。分别建立双侧河渠潜水和承压含水层地下水非稳定流运动解析解和区域地下水三维非稳定流数值模拟模型,对比评价水库蓄水后二元结构库岸的地下水动态变化过程。结果表明:在评价前期,解析法和数值法均能够刻画库区蓄水后库岸地下水浸没的动态变化规律和趋势;然而在评价中后期,降雨入渗因素对地下水浸没的作用逐渐凸显,数值法的计算结果更为合理。同时,基于数值法,结合浸没评判标准,预测蓄水至第3年末的浸没面积将增大至10.91 km2。研究成果可为工程前期浸没控制方案的布置提供科学依据。
Abstract
Situated at Ganjiang River Terrace, the left reservoir bank of Xingan Navigation and Power Junction Project is a typical double-layer hydrogeological structure. Depicting the dynamic process of groundwater immersion in the double-layer structural reservoir bank after impoundment is a prerequisite for assessing reservoir immersion reasonably. In this study we established analytical solutions for the transient groundwater flow in upper unconfined and lower confined aquifers between two lateral watercourses and a three-dimensional numerical model of transient groundwater flow for comparative study. Furthermore, we evaluated the influencing range of groundwater immersion based on the judging criteria of reservoir immersion in Ganjiang section. The comparison results indicate that in early stage of assessment both the analytical and numerical methods could describe the dynamic process of groundwater immersion after impoundment. However, in the middle and late stages of evaluation, the result of numerical method is more reasonable as the effect of rainfall infiltration on groundwater immersion gradually becomes more prominent. Meanwhile, the immersion range will increase to 10.91 km2 at the end of the third year predicted by the numerical modeling. The research findings provide scientific basis for the design of immersion controlling.
关键词
库区浸没 /
二元结构库岸 /
解析法 /
数值法 /
浸没面积
Key words
reservoir immersion /
dual-structural reservoir bank /
analytical solution /
numerical modeling /
immersion area
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参考文献
[1] HUDAK P F.水文地质学原理[M].3版.王焰新,郭清海,王知悦,译.北京:高等教育出版社,2010.
[2] 杜兴武,肖红宇,詹忠凯.考虑渗流水头损失时二元阶地浸没范围预测方法[J].湖北水利水电,2009(2):64-66.
[3] 金云弼,刘春宇,赵艳青.结合水动力学原理在旬阳水电站安康城区及周边浸没研究中的应用[J].工程地质学报, 2008,16(5):683-687.
[4] 尹庆华,卢占国.赣江石虎塘航电枢纽工程库区防护工程的浸没治理[J].江西水利科技,2015,41(5):383-386.
[5] 曹 洪,尹小玲,魏旭辉,等.潮州供水枢纽工程库区浸没影响初探[J].岩石力学与工程学,2004,23(5):862-866.
[6] 王俊梅,刘海宁.水库蓄水引发的地下水位抬升和渗控措施研究[J].水文地质工程地质,2011,38(5):115-119.
[7] EBRAHIM G Y, VILLHOLTH K G. Estimating Shallow Groundwater Availability in Small Catchments Using Streamflow Recession and Instream Flow Requirements of Rivers in South Africa[J]. Journal of Hydrology, 2016, 541: 754-765.
[8] 冯 伟.对尼尔基水库浸没评价中黏性土层渗流特点的探讨[J].工程地质学报,2010,18(增刊1):64-70.
[9] CHEN Yi-fei, HONG Jia-min, TANG Shao-long, et al. Characterization of Transient Groundwater Flow Through a High Arch Dam Foundation During Reservoir Impounding[J]. Journal of Rock Mechanics and Geotechnical Engineering, 2016, 8(4): 462-471.
[10]GB 487—2008,水利水电工程地质勘察规范[S].北京:中国计划出版社,2008.
[11]胡广冲,梁 杏,潘欢迎,等.浸没评价中二元阶地地下水位壅高值的计算方法对比[J].地质科技情报,2015,34(1):191-197.
[12]曹 洪,孙子钧,李 俊,等.潮州城区浸没影响的预测与实测资料分析[J].岩石力学与工程学报,2009,28(11):2161-2166.
[13]王迎霜.北京延庆新城规划区浸没预测研究[D].北京:中国地质大学(北京) ,2012.
[14]吴昌瑜,李思慎,张 伟.解析元素法用于老河口市城区地下水浸没影响的研究[J].raybet体育在线
院报,2001,18(5): 61-63.
[15]SHU Long-cang, CHEN Xun-hong. Simulation of Water Quantity Exchange Between Groundwater and the Platte River Water, Central Nebraska[J]. Journal of Central South University, 2002, 40(5): 918-924.
[16]骆祖江,杨 林,李占军,等.松原壅水坝工程库区左岸浸没预测三维数值模拟[J].农业工程学报,2012,28(3):129-134.
[17]李明远,周志芳,杨 蕴,等.新干航电枢纽工程右岸浸没评价与控制[J].河海大学学报(自然科学版),2018,46(3):203-210.
[18]DIERSCH H J G. FEFLOW: Finite Element Modeling of Flow, Mass and Heat Transport in Porous and Fractured Media[M]. Heidelberg: Springer-Verlag, 2014.
[19]SAMANI N, KOMPANI-ZARE M, BARRY D A, et al. MODFLOW Equipped with a New Method for the Accurate Simulation of Axisymmetric Flow[J]. Advances in Water Resources, 2004, 21(1):31-45.
[20]CHEN Chong-xi,KUANG Xing-xing,JIAO Jiu-jiu.Methods to Derive the Differential Equation of the Free Surface Boundary[J].Groundwater,2010,48(3):329-332.
[21]曹剑峰,迟宝明,王文科,等.专门水文地质学[M].3版.北京:科学出版社,2006.
基金
江西省交通运输厅重点工程科技计划项目(2016C0053);国家自然科学基金项目(41572209);河海大学中央高校基本科研业务费专项资金项目(2018B18714)