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On the non-stationarity of hydrological response in anthropogenically unaffected catchments: an Australian perspective

机译:关于人为未受影响流域水文响应的非平稳性:澳大利亚的观点

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Increases in greenhouse gas concentrations are expected to impact the terrestrial hydrologic cycle through changes in radiative forcings and plant physiological and structural responses. Here, we investigate the nature and frequency of non-stationary hydrological response as evidenced through water balance studies over 166 anthropogenically unaffected catchments in Australia. Non-stationarity of hydrologic response is investigated through analysis of long-term trend in annual runoff ratio (1984–2005). Results indicate that a significant trend (ip/i?&?0.01) in runoff ratio is evident in 20 catchments located in three main ecoregions of the continent. Runoff ratio decreased across the catchments with non-stationary hydrologic response with the exception of one catchment in northern Australia. Annual runoff ratio sensitivity to annual fractional vegetation cover was similar to or greater than sensitivity to annual precipitation in most of the catchments with non-stationary hydrologic response indicating vegetation impacts on streamflow. We use precipitation–productivity relationships as the first-order control for ecohydrologic catchment classification. A total of 12 out of 20 catchments present a positive precipitation–productivity relationship possibly enhanced by COsub2/sub fertilization effect. In the remaining catchments, biogeochemical and edaphic factors may be impacting productivity. Results suggest vegetation dynamics should be considered in exploring causes of non-stationary hydrologic response.
机译:预计温室气体浓度的增加将通过辐射强迫的变化以及植物的生理和结构反应来影响陆地水文循环。在这里,我们调查了澳大利亚166个人为未受影响的流域的水平衡研究,证明了非平稳水文响应的性质和频率。通过分析年径流比(1984-2005)的长期趋势,研究了水文响应的非平稳性。结果表明,位于非洲大陆三个主要生态区的20个集水区的径流比有明显的趋势( p <0.01)。除澳大利亚北部一个集水区外,非静态水文响应的集水区径流率均下降。在大多数流域,年径流比对年均植被分数的敏感性与年降水敏感性相似或更高,非平稳水文响应表明植被对溪流的影响。我们将降水与生产力的关系作为生态水文学流域分类的一级控制。 20个流域中共有12个呈现出正降水与生产力的关系,这可能通过CO 2 施肥效应得到增强。在其余流域,生物地球化学和水生因素可能会影响生产率。结果表明,在探索非平稳水文响应的原因时应考虑植被动力学。

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