首页> 外文期刊>Journal of hydrology, New Zealand >Perched and leaky layers in complex surface-subsurface flow environments: the Kawerau shallow groundwater aquifer, New Zealand
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Perched and leaky layers in complex surface-subsurface flow environments: the Kawerau shallow groundwater aquifer, New Zealand

机译:复杂的表面地下流动环境中的栖息和泄漏层:Kawerau浅地下水含水层,新西兰

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摘要

Perched and leaky geological layers can play an important role in hydrological systems by redirecting land surface recharge and reducing total recharge volume to regional aquifers. The extent of continuity and permeability of perched layers can be key physical parameters in surface and subsurface flow connection to regional groundwater systems. A- semi-permeable perched layer with discontinuities, heterogeneity, fractures and faults will inevitably increase the spatial complexity of local recharge in an otherwise simple system. Relatively little is known about how perched and leaky layers might control linkages between surface flow, shallow groundwater flow, and regional groundwater. We describe one such system in the Kawerau shallow groundwater aquifer (New Zealand), where a thin, semi-permeable and fractured layer alternates between leaky and perching behaviour. A numerical groundwater model indicates the perching layer plays a critical role in controlling the volume and spatial pattern of water exchange between surface water and local and regional groundwater systems.
机译:栖息和泄漏的地质层可以通过重定向土地表面充电并降低到区域含水层的总充电体积来发挥重要作用。栖息地层的连续性和渗透程度可以是与区域地下水系统的表面和地下流动连接的关键物理参数。具有不连续性,异质性,裂缝和故障的A-半透可渗透层将不可避免地增加局部重新充电的空间复杂性,否则简单的系统。讨论栖息和泄漏层可能控制表面流动,浅地下水流动和区域地下水之间的连接相对较少。我们在川绍浅层地下水含水层(新西兰)中描述了一种这样的系统,其中薄,半透明和裂缝层在泄漏和栖息行为之间交替。数值地下水模型表示栖息层在控制地表水和局部地下水系统之间的水交换的体积和空间模式方面发挥着关键作用。

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