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Drawdown log-derived analysis for interpreting constant-rate pumping tests in inclined substratum aquifers

机译:绘制对数日志导出分析,用于解释倾斜底屑含水层中的恒定速率泵送测试

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Constant-rate pumping tests (CRPT) performed in aquifers having an inclined substratum (IS) cannot be interpreted using Theis-like models, due to an increasing thickness that is beyond conventional hydraulic assumptions. Using an empirical process based on numerical modelling, this study submits original tools for the detection of IS aquifers and the interpretation of their hydrodynamic responses to CRPT, using derivative [ds/dlog(t)] and flow dimension (n) analyses. It is shown that IS aquifers produce a drawdown log-derivative signal composed of two radial regimes and one spherical flow regime (n-sequence = 2-2-3). Comprehensive sensitivity analyses make it possible to constrain relationships between, on one hand, characteristic derivative responses, and on the other hand, hydraulic conditions such as pumping rate, distance from the well to the corner, substratum inclination, and aquifer properties, including anisotropic hydraulic conductivity. This study contributes to widening the array of tools available for the interpretation of pumping tests, by implementing a novel conceptual model for a specific type of nonuniform aquifer that has remained unaddressed; further, it provides another interpretation of the spherical flow regime, which has been interpreted in the petroleum literature to reflect partially penetrating/completing wells. Finally, a field application of the submitted interpretative tools to a CRPT into an IS aquifer is presented.
机译:由于超出传统液压假设的厚度增加,在具有倾斜基质(是)的含水层中的含水速率泵送测试(Crpt)不能使用诸如类似的厚度来解释。使用基于数值建模的实证过程,本研究提出了用于检测的原始工具是含水层的原始工具和使用衍生[DS / DLOG(T)]和流量尺寸(N)分析对CRPT的流体动力响应的解释。结果表明,含水层产生由两个径向制度和一个球形流动状态组成的抽出对数衍生物信号(N-序列= 2-2-3)。综合敏感性分析使得可以在一方面,特征衍生响应和另一方面,诸如泵送速率,距离拐角的距离,副倾角和含水层特性等液压条件(包括各向异性液压)之间的关系电导率。本研究有助于扩大可用于解释泵送测试的工具阵列,通过实施一种仍然未被分支的非均匀含水层的新颖概念模型;此外,它提供了对球形流动状态的另一种解释,该流动状态已经被解释在石油文献中,以反映部分穿透/完成孔。最后,提出了将提交的解释工具应用于CRPT到A含水层的现场应用。

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