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Estimation of transmissivity and storage coefficient by means of a derivative method using the early-time drawdown

机译:使用早期回落的导数法估算透射率和储能系数

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摘要

A novel methodology is proposed to calculate transmissivity (T) and storage coefficient (S) in a confined aquifer, based on the Theis (1935) solution and using only the first derivative of the drawdown with respect to time. By analyzing the behavior of the third derivative of the drawdown with respect to the logarithm of time, it is apparent that the third derivative vanishes when the first derivative attains its peak value. Since the third log-derivative is zero if, and only if, the argument, u, of the Theis well function is equal to unity, this condition can be used to estimate T and S, knowing the time at which the first derivative reaches its peak, and so overcoming the problem of actually computing the third log-derivative, which is very unstable. The main characteristic of the proposed method is that it does not require long pumping tests, since T and S are calculated using only the early-time drawdown. The proposed method was verified with a synthetic, an experimental and a field pumping test showing its validity when applied to homogeneous media. Theis CV (1935) The relation between lowering the piezometric surface and the rate and duration of discharge of a well using groundwater storage. Trans Am Geophys Union 16(2):519-524.
机译:提出了一种新颖的方法,该方法基于Theis(1935)解决方案并仅使用水位衰减量相对于时间的一阶导数来计算密闭含水层中的透射率(T)和存储系数(S)。通过分析下降的三阶导数相对于时间对数的行为,很明显,当一阶导数达到峰值时,三阶导数消失。由于仅当Theis阱函数的自变量u等于1时,第三对数导数为零,因此,在知道一阶导数到达其导数的时间时,可以使用此条件估计T和S。峰值,从而克服了实际计算非常不稳定的第三对数导数的问题。所提出的方法的主要特点是它不需要长时间的抽水试验,因为T和S仅使用早期压降来计算。通过合成,实验和野外抽运测试对所提出的方法进行了验证,结果表明该方法适用于均质介质。 Theis CV(1935)使用地下水储存,降低测压表面与排放井的速度和持续时间之间的关系。 Trans Am Geophys Union 16(2):519-524。

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