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Karst Aquifer Recharge: Comments on Somaratne, N. Characteristics of Point Recharge in Karst Aquifers. Water 2014, 6, 2782–2807

机译:岩溶含水层补给:关于Somaratne,N.的评论。水2014,6,2782–2807

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The article “Characteristics of Point Recharge in Karst Aquifers, Water 6: 2782–2807” by N. Somaratne evaluates various recharge estimation techniques applied to four limestone aquifers in South Australia. Somaratne [1] concludes that methods based on watertable fluctuations, groundwater modelling and water budgets are independent of recharge processes, and are therefore superior to the chloride mass balance (CMB) approach for karst aquifers. The current comment offers alternative interpretations from existing field measurements and previous literature, in particular for the Uley South aquifer, which is the focus of much of the article by Somaratne [1]. Conclusions regarding this system are revised, partly to account for the misrepresentation of previous studies. The aeolianite sediments of Uley South are mostly unconsolidated or poorly consolidated, and dissolution features in the calcrete capping provide point infiltration into a predominantly unconsolidated vadose zone, whereas Somaratne’s [1] findings require that the system comprises well-developed conduits in otherwise low-conductivity limestone. Somaratne’s [1] assertion that the basic premise of CMB is violated in Uley South is disputable, given strong evidence of relatively well-mixed groundwater arising from mostly diffuse recharge. The characterization of karst aquifer recharge should continue to rely on multiple techniques, including environmental tracers such as chloride.
机译:N. Somaratne的文章“喀斯特含水层中点补给的特征,水6:2782-2807”评估了适用于南澳大利亚州四个石灰岩含水层的各种补给估算技术。 Somaratne [1]得出结论,基于地下水位波动,地下水模型和水预算的方法与补给过程无关,因此优于喀斯特含水层的氯化物质量平衡(CMB)方法。当前的评论为现有的野外测量和以前的文献提供了其他解释,特别是对Uley South含水层的分析,这是Somaratne [1]在本文中的重点。修订了有关该系统的结论,部分是为了解决以前研究的错误陈述。 Uley South的风成岩沉积物大部分是未固结或固结较差的,并且在旋盖顶盖中的溶解特征使点渗入到主要为未固结的渗流带中,而Somaratne [1]的发现要求该系统包括发育良好的导管,否则该导管具有低电导率石灰石。 Somaratne的[1]断言,在Uley South违反了CMB的基本前提的说法是有争议的,因为有确凿的证据表明,主要由分散补给引起的地下水相对混合得很好。岩溶含水层补给的表征应继续依靠多种技术,包括环境示踪剂(如氯化物)。

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