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首页> 外文期刊>Hydrogeology journal >Influence of fracture anisotropy and lithological heterogeneity on wellfield response in a fluvial sandstone aquifer of the Carboniferous Moncton Subbasin, Canada
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Influence of fracture anisotropy and lithological heterogeneity on wellfield response in a fluvial sandstone aquifer of the Carboniferous Moncton Subbasin, Canada

机译:裂缝各向异性和岩性非均质性对加拿大石炭纪蒙古顿盆地河流型砂岩含水层井场响应的影响

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摘要

Pump tests and geophysical logs acquired in a fluvial sandstone aquifer within the resource-rich Moncton Subbasin of New Brunswick, Canada, have been used to characterize fracture patterns and flow directions for purposes of developing a water-wellfield protection plan. Fracture patterns consist of three high-angle sets, and a low-angle set parallel to bedding. NW-trending high-angle fractures, predominantly in fluvial sandstone units, appear to be most important in controlling groundwater flow directions. This contrasts with an earlier regional hydrogeological study that attributed most flow to sub-horizontal bedding-plane fractures. Water levels monitored during a 72-h pump test revealed drawdown extension parallel to the NW-trending fracture set. Drawdown curves indicate that the aquifer is laterally constrained-likely reflecting differences in fracturing observed between the channelized sandstone and surrounding shale units. As a result, groundwater flow induced by pumping is influenced by both fracture anisotropy and by the heterogeneity of the fluvial depositional environment. Relationships observed between fracture patterns, regional geological structure and lithology provide a basis for extrapolating the conceptual model to other nearby areas in the region, where potential impacts of geological resource development on groundwater are attracting public concern.
机译:在加拿大新不伦瑞克省资源丰富的蒙古​​顿盆地中的河流砂岩含水层中获得的泵送测试和地球物理测井,已用于表征裂缝模式和流向,以制定水井场保护计划。断裂模式包括三个高角度组和一个平行于层理的低角度组。 NW趋势的大角度裂缝(主要在河流砂岩单元中)似乎是控制地下水流向最重要的裂缝。这与较早的区域水文地质研究形成了鲜明对比,后者将大部分流量归因于水平下层理平面裂缝。在72小时的泵测试过程中监测的水位显示出垂线延伸与西北趋势断裂带平行。下降曲线表明,含水层受到侧向约束,可能反映了通道化砂岩和周围页岩单元之间观察到的压裂差异。结果,由抽水引起的地下水流既受到裂缝各向异性的影响,又受到河流沉积环境的不均匀性的影响。裂缝模式,区域地质结构和岩性之间观察到的关系为将概念模型外推到该区域的其他附近区域提供了基础,在该区域附近,地质资源开发对地下水的潜在影响引起了公众的关注。

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