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Comparison of slug and pumping tests for hydraulic tomography experiments: a practical perspective

机译:液压层析成像实验的弹药和抽气试验比较:实用的观点

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Hydraulic tomography is the simultaneous analysis of several hydraulic tests performed in multiple isolated intervals in adjacent wells to image heterogeneous hydraulic property fields. In this study, we compare the resolutions associated with hydraulic tomography experiments carried out with slug tests and pumping tests for simple configurations with hydraulic property values representative of an extensively studied littoral aquifer. Associated test designs (e.g., pumping rates, test durations) and the validity of the principle of reciprocity are also assessed. For this purpose, synthetic tomography experiments and their associated sensitivity matrices are generated using a radial flow model accounting for wellbore storage. The resolution analysis is based on a pseudo-inverse analysis of the sensitivity matrix with a noise level representative of field measurements. Synthetic experiments used equivalent perturbations for slug tests and pumping tests. Even though pumping tests induce a drawdown in observation intervals that is three times larger than head changes due to slug tests, resolutions for hydraulic conductivities (horizontal and vertical) are similar for the two tests and slightly lower for specific storage with pumping. However, experiments with pumping require fifty times more water and are seven times longer to perform than experiments with slug tests. Furthermore, reducing pumping rates to limit disposal of water or test durations to decrease field data acquisition time would considerably lower resolutions for either scenario. Analyses are done using all available stressed and observation intervals as required by the non-applicability of the principle of reciprocity for slug tests and pumping tests with important wellbore storage. This study demonstrates concepts that have important implications for the performance and analysis of hydraulic tomography experiments.
机译:水力层析成像是对相邻井中多个孤立的间隔中进行的几次水力测试的同时分析,以对非均质的水力场进行成像。在这项研究中,我们比较了用子弹试验和抽水试验进行的水力层析成像实验的分辨率,这些试验采用的水力特性值代表了广泛研究的沿海含水层的简单配置。还评估了相关的测试设计(例如抽速,测试持续时间)和互惠原则的有效性。为此,使用考虑了井筒存储的径向流模型来生成合成层析成像实验及其相关的灵敏度矩阵。分辨率分析基于对灵敏度矩阵的伪逆分析,其中噪声电平代表场测量值。合成实验使用了等效的扰动测试和抽气测试。尽管抽水试验导致的观测间隔下降量比试验引起的压头变化大三倍,但两种试验的水力传导率(水平和垂直)分辨率相似,而对于特定的抽水条件,其电导率分辨率略低。但是,与抽气试验相比,抽水试验需要的水多50倍,并且执行时间要长7倍。此外,降低抽水速率以限制水的处理或降低测试持续时间以减少现场数据采集时间将显着降低两种情况的分辨率。根据互易原理的不适用性,对所有重要的井筒存储进行的段塞测试和抽水测试,都需要使用所有可用的应力和观察间隔来进行分析。这项研究表明了对液压层析成像实验的性能和分析具有重要意义的概念。

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