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首页> 外文期刊>Journal of Hydrology >Aquifer response to stream-stage and recharge variations. II. Convolution method and applications
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Aquifer response to stream-stage and recharge variations. II. Convolution method and applications

机译:含水层对水位和补给量变化的响应。二。卷积方法及应用

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摘要

In this second of two papers, analytical step-response functions, developed in the companion paper for several cases of transient hydraulic interaction between a fully penetrating stream and a confined, leaky, or water-table aquifer, are used in the convolution integral to calculate aquifer heads, streambank seepage rates, and bank storage that occur in response to stream-stage fluctuations and basinwide recharge or evapotranspiration. Two computer programs developed on the basis of these step-response functions and the convolution integral are applied to the analysis of hydraulic interaction of two alluvial stream-aquifer systems in the northeastern and central United States. These applications demonstrate the utility of the analytical functions and computer programs for estimating aquifer and streambank hydraulic properties, recharge rates, streambank seepage rates, and bank storage. Analysis of the water-table aquifer adjacent to the Blackstone River in Massachusetts suggests that the very shallow depth of water table and associated thin unsaturated zone at the site cause the aquifer to behave like a confined aquifer (negligible specific yield). This finding is consistent with previous studies that have shown that the effective specific yield of an unconfined aquifer approaches zero when the capillary fringe, where sediment pores are saturated by tension, extends to land surface. Under this condition, the aquifer' s response is determined by elastic storage only. Estimates of horizontal and Vertical hydraulic conductivity, specific yield, specific storage, and recharge for a water-table aquifer adjacent to the Cedar River in eastern Iowa, determined by the use of analytical methods, are in close agreement with those estimated by use of a more complex, multilayer numerical model of the aquifer. Streambank leakance of the semipervious streambank materials also was estimated for the site. The streambank-leakance parameter may be considered to be a general (or lumped) parameter that accounts not only for the resistance of flow at the river-aquifer boundary, but also for the effects of partial penetration of the river and other near-stream flow phenomena not included in the theoretical development of the step-response functions. Published by Elsevier Science B.V. [References: 36]
机译:在这两篇论文的第二篇中,在卷积积分中使用了分析论文的阶跃响应函数,该函数是在同篇论文中针对全渗透流与承压,渗漏或地下水位含水层之间的瞬时水力相互作用的几种情况开发的,用于计算响应于水位波动和流域范围内的补给或蒸散作用而发生的含水层水头,河岸渗流率和河岸存储。在这些阶跃响应函数和卷积积分的基础上开发的两个计算机程序被用于分析美国东北和中部两个冲积水-含水层系统的水力相互作用。这些应用程序演示了分析功能和计算机程序在估算含水层和河床水力特性,补给率,河床渗流率和河床存储量方面的实用性。对马萨诸塞州黑石河附近的地下水位蓄水层的分析表明,地下水位很浅以及该地点相关的薄薄的不饱和带,导致该蓄水层的行为类似于承压含水层(单位产量可忽略不计)。这一发现与以前的研究一致,后者表明当毛细管边缘(沉积物孔隙因张力而饱和)延伸到陆地表面时,无限制含水层的有效比产率接近零。在这种情况下,含水层的响应仅由弹性存储决定。通过使用分析方法确定的与爱荷华州东部雪松河相邻的地下水位含水层的水平和垂直水力传导率,比产量,比存储和补给量的估算值与通过分析方法估算的值非常吻合。更复杂的含水层的多层数值模型。该地点还估计了半透水河岸材料的河岸渗漏。流库泄漏参数可以被认为是一个通用(或集总)参数,它不仅考虑了河流-含水层边界的水流阻力,而且还考虑了河流的部分渗透和其他近流水流的影响。阶跃响应函数的理论发展中未包括的现象。由Elsevier Science B.V.发布[参考:36]

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