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Earth-tide-induced fluctuations in the salinity of an inland river, New South Wales, Australia: a short-term study

机译:潮汐引起的内陆河流盐度波动,澳大利亚新南威尔士州:一项短期研究

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摘要

Wybong Creek discharges salts into the agriculturally and industrially important Hunter River in New SouthWales, Australia. Abrupt increases in salinity occur periodically in the mid-Wybong Creek catchment. In order to understand the processes which cause these abrupt increases, changes in surface and groundwater were investigated. It is shown that salinity increases can be attributed to highly discrete groundwater discharge directly into the river from below. Hourly electrical conductivity data measured in the river showed regular, diurnal electrical conductivity fluctuations of up to 350 mu S cm(-1). These fluctuations could not be attributed to barometric pressure, temperature, or evapotranspiration. Instead, a similar periodicity in surface water electrical conductivity and groundwater height in nearby groundwater wells was found. Fluctuations were of similar periodicity to the orthotides which cause fluctuations in surface water height and are induced by Earth tides. The geology in the mid-catchment area indicates conditions are optimal for Earth tides to impact groundwater. The reporting of orthotidal changes in water chemistry in this article is believed to be the first of its kind in the scientific literature, with the large fluctuations noted having important implications for watermonitoring and management in the catchment. Further research investigating Earth-tide-induced phases of groundwater heights will better constrain the relationships between surface water chemistry and groundwater height.
机译:Wybong Creek向澳大利亚新南威尔士州具有重要农业和工业意义的Hunter河排放盐分。威邦溪中游流域的盐度突然增加。为了了解导致这些突然增加的过程,研究了地表水和地下水的变化。结果表明,盐度的增加可以归因于高度离散的地下水直接从下方排入河流。在河流中测得的每小时电导率数据显示,每日电导率的定期波动最大为350μS cm(-1)。这些波动不能归因于大气压力,温度或蒸散量。相反,在附近的地下水井中发现了类似的周期性地表水电导率和地下水高度。波动具有与正弦波相似的周期性,正弦波引起地表水高度的波动并由地球潮汐引起。集水区中部的地质情况表明,潮汐对地下水产生影响的最佳条件。据信,本文报道的水化学正畸变化是科学文献中的此类报道,其中较大的波动对集水区的水监测和管理具有重要意义。研究潮汐引起的地下水高度阶段的进一步研究将更好地约束地表水化学与地下水高度之间的关系。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2017年第4期|188.1-188.19|共19页
  • 作者单位

    Australian Natl Univ, Res Sch Earth Sci, Acton, ACT 0200, Australia|Murrang Earth Sci Pty Ltd, GPO Box 2310, Canberra, ACT 2601, Australia;

    Australian Natl Univ, Fenner Sch Environm & Soc, Acton, ACT 0200, Australia|CSIRO Land & Water, Black Mt, ACT 2601, Australia;

    Australian Natl Univ, Fenner Sch Environm & Soc, Acton, ACT 0200, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Salinity; Surface/groundwater interactions; Fracture flow; Orthotides; Earth tides;

    机译:盐度;地表水与地下水的相互作用;裂隙流;正潮汐;地球潮汐;

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