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Canopy enhanced chloride deposition in coastal South Australia and its application for the chloride mass balance method

机译:冠层增强南澳大利亚沿海地区氯离子的沉积及其在氯离子质量平衡方法中的应用

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摘要

Validity of the chloride mass balance (CMB) method relies on good quantification of the total chloride input to the land surface. The traditional way to quantify the chloride input, using bulk precipitation measured in the open field is questionable to apply in forest catchments. Chloride deposition can be significantly enhanced by the tree canopies as indicated by previous throughfall studies. However, this enhancement effect has not been examined or generally considered in the CMB method for groundwater recharge estimation and few chloride deposition data were available for the eucalyptus canopies. In this study, throughfall experiment was carried out in the native eucalyptus forest and pine plantations in coastal forest of South Australia. The results show that chloride depositions in canopy areas are significantly higher than those in the adjacent open field with 28% enhancement at the eucalyptus site and 89% at the pine site. These results indicate that significant underestimation of groundwater recharge can be introduced if this enhancement effect is neglected in the CMB application. semi-empirical model is proposed to examine the controlling factors for the enhancement effect. The model will be useful to correct chloride input for the CMB application.
机译:氯化物质量平衡(CMB)方法的有效性取决于对输入到陆地表面的总氯化物的良好定量。使用在露天区域测得的大量降水来量化氯化物输入的传统方法在应用于森林集水区时存在疑问。如先前的穿透研究表明,树冠可以显着增强氯化物的沉积。但是,这种增强效果尚未在CMB方法中进行地下水补给估算的检验或一般考虑,并且桉树冠层的氯化物沉积数据很少。在这项研究中,在南澳大利亚沿海森林的天然桉树林和松树人工林中进行了穿透试验。结果表明,冠层区域的氯化物沉积量显着高于相邻的开阔地带,其中桉树部位增加了28%,松树部位增加了89%。这些结果表明,如果在CMB应用程序中忽略了这种增强效果,可能会导致地下水补给的明显低估。提出了半实证模型,研究了增强效果的控制因素。该模型对于纠正CMB应用中的氯化物输入很有用。

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