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Well storage effect isolation and straight-line method applications

机译:储油效果隔离和直线法应用

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In the case of a significant well storage, the initial period of the drawdown observation is significantly influenced by the well storage. The duration of this period is so far estimated with formulae which use the transmissivity of the aquifer. But this parameter should be determined with the interpretation of the ongoing pumping test. This paper gives an alternative formula, which does not use the aquifer parameters. The formula uses only parameters which can be determined easily during a pumping test. Furthermore, the derived formula is also valid for a large diameter pumping well. In addition, a straight-line equation with well storage effect is given for the estimation of aquifer parameters. This explicitly shows the effect of pumping well storage on observation wells and becomes equivalent to the well-known Cooper and Jacob (CJ) method after large pumping duration. Moreover, simple unique formulae are offered for estimating both transmissivity and storativity parameters at large observation times. The application of the developed methodology is presented for the pumping test data, which are available in the literature.
机译:在大量储藏的情况下,井下观测的初始时期会受到储藏的显着影响。到目前为止,这一时期的持续时间已通过使用含水层透射率的公式进行了估算。但是,该参数应根据正在进行的泵送测试来确定。本文提供了一个替代公式,该公式不使用含水层参数。该公式仅使用在泵送测试期间可以轻松确定的参数。此外,推导的公式对于大口径抽水井也是有效的。此外,给出了具有良好储层效果的直线方程,用于估算含水层参数。这清楚地显示了抽水蓄能对观测井的影响,并且在抽水持续时间较长后,其效果等同于众所周知的Cooper and Jacob(CJ)方法。此外,还提供了简单的唯一公式,可用于在较长的观察时间估算透射率和透光率参数。介绍了已开发方法的应用,以用于抽水试验数据,这些数据可在文献中获得。

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