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首页> 外文期刊>Hydrogeology journal >Field evidence of hydraulic connections between bedrock aquifers and overlying granular aquifers: examples from the Grenville Province of the Canadian Shield
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Field evidence of hydraulic connections between bedrock aquifers and overlying granular aquifers: examples from the Grenville Province of the Canadian Shield

机译:基岩含水层与上覆颗粒状含水层之间水力连接的现场证据:加拿大盾构格伦维尔省的实例

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Field evidence of hydraulic connections between a bedrock aquifer and an overlying granular aquifer in the Canadian Shield (Grenville Province) is presented. This issue is rarely considered and investigated despite its important hydraulic and chemical consequences and its widespread occurrence worldwide. The methodology employed is based on complementary field tests conducted at specific experimental sites instrumented both in the rock and in the overlying deposits. One of the bedrock sites revealed a natural hydraulic connection with the overlying granular aquifer caused by the weathered surface of the uppermost bedrock. Another site revealed an artificial hydraulic connection between the bedrock and the granular aquifer created by an improperly sealed casing. A regional study showed that hydraulic connections yield an erroneous interpretation of the true hydraulic properties of the tested aquifer. The detection of hydraulic connections is therefore essential to properly define well-capture areas and contamination conditions. It is recommended to practitioners that pumping tests be performed as well as hydrochemical comparisons of each existing aquifer unit. Falling-head permeability tests are also helpful in verifying the quality of the seal at the bedrock–casing contact. More effective procedural controls and better well-construction practices are necessary to reduce the risks of cross-contamination induced by defective seals.
机译:给出了加拿大盾构(格伦维尔省)基岩含水层与上覆颗粒状含水层之间水力连接的现场证据。尽管有重要的水力和化学后果并且在世界范围内广泛存在,但很少考虑和研究此问题。所采用的方法是基于在岩石和上覆矿床中的特定实验点进行的补充现场测试。基岩位置之一显示,由于最上层基岩的风化表面,与上覆的粒状含水层形成了天然的水力联系。另一个地点揭示了基岩和由不适当密封的套管产生的粒状含水层之间的人工水力连接。一项区域研究表明,水力连接对被测含水层的真实水力特性产生了错误的解释。因此,液压连接的检测对于正确定义井口捕获区域和污染条件至关重要。建议从业人员对每个现有含水层单元进行抽水测试以及水化学比较。落头渗透率测试也有助于验证基岩-套管接触处的密封质量。为了减少密封缺陷引起的交叉污染的风险,必须采取更有效的程序控制和良好的施工规范。

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