标题: | 渗漏含水层考虑弯曲效应之地下水流半解析解 Semi-Analytical Solution of Groundwater Flow in a Leaky Confined Aquifer under Bending Effect |
作者: | 游佳琪 叶 弘 德 Yeh, Hund-Der 环境工程系所 |
关键字: | 地下水;定流量抽水;渗漏受压含水层;弯曲效应;groundwater;constant-rate pumping;leaky confined aquifer (LCA);bending effect |
公开日期: | 2011 |
摘要: | 传统地下水理论假设含水层总应力为一定值,且忽略受压含水层在抽水时所伴随产生的力学行为,但实际抽水时,水层结构可能会像平板一样弯曲。本研究目的为探讨定流量抽水下,推导渗漏受压含水层受到弯曲效应影响所产生泄降分布的半解析解。本研究利用所发展出的半解析解,探讨渗漏受压含水层系统在定抽水率下,泄降分布受到弯曲及渗漏效应的影响。藉由建立数学模式,以描述渗漏受压含水层系统承受滞水层中弯曲效应影响的泄降分布。此模式包括三个耦合的控制方程式,分别是描述受压水层暂态泄降分布方程式、渗漏水层暂态泄降分布方程式、及基于板壳理论所描述水层弯曲效应的方程式;接着,针对此三个方程式,应用拉普拉斯(Laplace)和汉可尔(Hankel)转换方法求得模式的半解析解,最后,使用修正Crump方法进行数值逆转推求时间域的结果。此新解在忽略弯曲或渗漏效应下,可分别简化至拉普拉斯域的Hantush (1960) 解和时间域的Wang et al. (2004) 解。本研究利用所推得的解作分析,显示抽水试验初期含水层泄降受到弯曲效应的影响,而试验晚期则受到含水层渗漏因子的影响较为明显。敏感度分析结果显示,含水层压缩性只在试验初期敏感,造成含水层释放出的水量较传统地下水理论估计值小。因含水层泄降分布在试验晚期对滞水层水力传导系数较具敏感度,导致相较于无渗漏受压含水层具有较小的含水层泄降分布。此外,泄降对含水层的厚度及水力传导系数具有最高的敏感度。 Traditionally, the groundwater flow induced by pumping often assumes that the total stress of aquifer maintains constant all the time and the aquitard mechanical behavior is negligible. The formation of the aquifer system may actually bend like a plate when subject to pumping. This study aims at developing a new semi-analytical model for investigating the impacts of aquitard bending and leakage rate on the drawdown of the confined aquifer due to a constant-rate pumping in a leaky confined aquifer (LCA) system. A mathematical model is first build for delineating the LCA drawdown distribution subject to bending effect emerged in the confining unit. This model contains three governing equations, delineating the transient behavior of drawdown distributions in the aquitard and the confined aquifer and the vertical displacement based on a thin plate theory of small-deflection in response to aquitard bending. The semi-analytical solution is found by employing the methods of the Laplace transform and Hankel transform. The corresponding time-domain result of the derived solution is established by applying the modified Crump method. Without considering the bending effect, this new solution can reduce to the Hantush solution in Laplace domain (Hantush, M.S., 1960. Modification of the theory of leaky aquifers. Journal of Geophysical Research 65(11), 3713-3725). On the other hand, this solution reduces to the Wang et al. solution (Wang, X.S., Chen, C.X., Jiao, J.J., 2004. Modified Theis equation by considering the bending effect of the confining unit. Advances in Water Resources 27(10), 981-990.) in time domain when neglecting the leakage effect. The results predicted from the present solution show that the aquifer drawdown will be influenced by the bending effect at early time and the leakage effect at late time. The results of sensitivity analysis indicate that the skeleton compression of the aquifer is sensitive only at early time, causing less amount of water released from pumped aquifer than that predicted by the traditional groundwater theory. The aquifer drawdown is more sensitive to aquitard’s hydraulic conductivity at late time, leading smaller drawdown than non-leaky one. Additionally, both the hydraulic conductivity and thickness of the aquifer are the most sensitive parameters to the predicted drawdown. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079919502 http://hdl.handle.net/11536/49670 |
显示于类别: | Thesis |
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