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Estimativas de condutividade hidráulica a partir de perfilagens geofísicas no Sistema Aquífero Guarani

机译:瓜拉尼含水层系统中地球物理概况的液压导电性估计

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Hydraulic conductivity (K) is a crucial parameter for different applications in groundwater studies, such as vulnerability and aquifer assessment, groundwater management, contamination velocity estimation, and numerical simulations of groundwater flow and transport. Although there are diverse approaches in order to obtain K values, only a small number of these methods allow determination of high-resolution K changes in great aquifer depths. In an attempt to solve this difficulty, the present work developed and tested a new approach, in which porosity values, estimated from sonic and gamma ray logs, were used to calculate K values with high spatial availability by using the Kozeny-Carman model. These tests were conducted in a deep well (1242 m), which exploits the Guarani Aquifer System water. The mean K values found by the proposed approach were similar to K value derived from pumping test. From the use of this approach, it was noted that Pirambóia formation presents strong K variability, while Botucatu formation is relatively homogeneous, in accordance with the depositional context of these two geological units. Finally, we confirm that K values obtained from the pumping tests represent the geometric mean of the K values along the filtered section of tested wells.
机译:液压电导率(K)是地下水研究中不同应用的关键参数,例如漏洞和含水层评估,地下水管理,污染速度估计和地下水流量的数值模拟。虽然有不同的方法以获得k值,但只有少量这些方法允许确定高分辨率k的巨大含水层深度的变化。为了解决这个困难,目前的工作开发并测试了一种新方法,其中通过使用Kozeny-Carman模型来计算具有高空间可用性的k值的孔隙率值。这些测试在深井(1242米)中进行,瓜拉尼含水层系统水。所提出的方法发现的平均值值类似于泵浦测试的k值。从使用这种方法,注意到Pirambóia形成呈现出强的K变异性,而Botucatu形成相对均匀,根据这两个地质单位的沉积背景。最后,我们确认从泵送测试获得的k值表示沿着测试孔的过滤部分的k值的几何平均值。

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