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Calculation of barometric efficiency in shallow piezometers using water levels, atmospheric and earth tide data

机译:利用水位,大气和地潮数据计算浅压计中的气压效率

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摘要

The variation in atmospheric pressure at Baldry in New South Wales, Australia (32°52′ S, 148°32′ E), has been determined using a 4-year record of hourly measurements. Fourier analysis of this data shows clear diurnal and semi-diurnal variation in atmospheric pressure caused by atmospheric tides. The semi-diurnal component of the tide changes little with the seasons and induces a barometric response in shallow confined piezometers. The piezometer response is shown to be contaminated by an earth-tide component that has to be removed before accurate barometric efficiencies can be calculated. Data from three piezometers installed in a region of fractured and weathered granite are described in this paper. The results show that piezometers installed in shallow bedrock can have barometric efficiencies of close to unity and that only a small quantity or thickness of lower permeability material is sufficient to cause confining conditions. This observation has important implications for the interpretation of recharge processes in shallow aquifers.
机译:使用四年的每小时测量记录确定了澳大利亚新南威尔士州Baldry的大气压力变化(南纬52°S,北纬148° 32')。对该数据进行的傅里叶分析显示,由潮汐引起的大气压力存在明显的昼夜变化和半日变化。潮汐的半日变化随季节变化不大,并在浅封闭压力计中引起气压响应。测得的压力计响应受一个大地分量的污染,在计算准确的气压效率之前必须将其删除。本文介绍了安装在破裂风化花岗岩区域中的三个压力计的数据。结果表明,安装在浅基岩中的压力计可以具有接近于1的气压效率,并且只有少量或厚度较小的低渗透率材料足以引起限制条件。这一观察结果对浅层含水层补给过程的解释具有重要意义。

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