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首页> 外文期刊>Hydrological Processes >Multi-depth monitoring of electrical conductivity and temperature of groundwater at a multilayered coastal aquifer: Jeju Island, Korea
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Multi-depth monitoring of electrical conductivity and temperature of groundwater at a multilayered coastal aquifer: Jeju Island, Korea

机译:多层沿海含水层的地下水电导率和温度的多深度监测:韩国济州岛

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摘要

To supplement conventional geophysical log data, this study presents temporal variations in electrical conductivity (EC) and temperature with depth in a multilayered coastal aquifer, on the eastern part of Jeju Island, Korea. One-month time-series data obtained at eight points from a multi-depth monitoring system showed that semidiurnal and semimonthly tidal variations induced dynamic fluctuations in EC and temperature. At some depths, EC ranged from 1483 to 26 822 μS cm~(-1), while some points showed no significant variations. The results of EC log and time-series data revealed that a sharp fresh-saltwater interface occurred at low tide, but the diffusion zone broadened to 20 m at high tide. EC, temperature, and tide level data were used for the cross-correlation analysis. The response time of EC and temperature to tide appears to range from less than 30 min to 11 h. Using end-member mixing analysis (EMMA), the fraction of variations of chloride concentration in the multilayered aquifer was explained, and a conceptual model was developed which subdivided the coastal aquifer into four vertical zones. The percentage of water derived from seawater varied from 2 to 48 at specific depth, owing to tidal fluctuations. Continuous observations of EC and temperature at multiple depths are powerful tools for quantifying the transport of saline water by tidal variations in multilayered coastal aquifers.
机译:为了补充常规的地球物理测井数据,该研究提出了韩国济州岛东部多层沿海含水层中电导率(EC)和温度随深度的时间变化。从多深度监测系统在八个点处获得的一个月时间序列数据表明,半日和半月潮汐变化引起EC和温度的动态波动。在某些深度,EC的范围为1483至26 822μScm〜(-1),而某些点则没有显着变化。 EC测井和时间序列数据的结果表明,在退潮时出现了尖锐的淡盐水界面,但在退潮时扩散区扩大到20 m。 EC,温度和潮位数据用于互相关分析。 EC和潮汐温度的响应时间似乎在不到30分钟到11小时的范围内。使用末端成员混合分析(EMMA),解释了多层含水层中氯离子​​浓度变化的比例,并建立了概念模型,将沿海含水层细分为四个垂直区域。由于潮汐波动,特定深度的海水中水的百分比从2到48不等。连续观察多个深度的EC和温度是通过多层沿海含水层中的潮汐变化来定量分析盐水输送的有力工具。

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