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Well flow and dilution measurements for characterization of vertical hydraulic conductivity structure of a carbonate aquifer

机译:碳酸盐含水层垂直液压导电性结构表征的井流量和稀释测量

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The paper aims to characterize vertical variations in horizontal hydraulic properties in a fractured carbonate aquifer, the Cretaceous Chalk in East Yorkshire, UK. Two approaches are used: an inverse model of well flow applied to flow logs of pumped open wells, and open well dilution testing. In this case study, transmissivity in the unconfined part of the aquifer is dominated by the highly permeable zone of water table fluctuation, where carbonate dissolution has occurred enhancing fracture aperture; a similar enhanced permeability zone is present at the top of the aquifer where it is confined beneath glacial deposits, although periglacial physical weathering during Quaternary cold periods, rather than carbonate dissolution, is responsible. The aquifer is also shown to contain deeper permeable horizons of stratigraphic origin, which are better developed in the unconfined section.
机译:本文旨在在英国东约约克郡的白垩纪粉笔中表征水平液压性能的垂直变化。 使用了两种方法:应用于泵浦开放井的流量流量的井流反向模型,以及打开井稀释测试。 在这种情况下,含水层的非整合部分中的透射率由水位波动的高度渗透区主导,其中碳酸酯溶解已经提高了裂缝孔; 在含水层的顶部存在类似的增强渗透区,其中它被限制在冰川沉积物下方,虽然在季寒时期的褶皱物理风化,而不是碳酸盐溶解,是负责任的。 含水层也显示出包含层层起源的更深渗透的地平线,这在不合适的部分中更好地发展。

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