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首页> 外文期刊>Progress in Physical Geography >Hydroclimatology, modes of climatic variability and stream flow, lake and groundwater level variability: A progress report
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Hydroclimatology, modes of climatic variability and stream flow, lake and groundwater level variability: A progress report

机译:水加工学,气候变异和流动模式,湖泊和地下水位变异性:进度报告

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Hydroclimatology is an expansive discipline largely concerned with understanding the workings of the hydrological cycle in a climate context. Acknowledging this, and given the burgeoning interest in the relation between climate and water in the context of working towards an improved understanding of the impacts of climatic variability on water resources, this progress report turns its attention to the connection between large-scale modes of climatic variability and hydrological variability in streams, lakes and groundwater. A survey of the recent literature finds that a plethora of teleconnection indices have been employed in the analysis of hydrological variability. Indices representing modes of climatic variability such as El Nino Southern Oscillation, the North Atlantic Oscillation, the Pacific North America pattern, the Pacific Decadal Oscillation and Atlantic Meridional Oscillation dominate the literature on climatic and hydrological variability. While examples of discernible signals of modes of climatic variability in stream flow and lake and groundwater level time series abound, the associations between periodic to quasi-period oscillations in atmospheric/ocean circulation patterns and variability within the terrestrial branch of the hydrological are far from simple, being both monotonic (linear and non-linear) and non-monotonic and also conditional on period of analysis, season and geographic region. While there has been considerable progress over the last five years in revealing the climate mechanisms that underlie the links between climatic and hydrological variability, a bothering feature of the literature is how climatic and hydrological variability is often viewed through a purely statistical lens with little attention given to diagnosing the relationship in terms of atmosphere and ocean physics and dynamics. Consequently, significant progress remains to be made in obtaining a satisfactory hydroclimatological understanding of stream flow, lake and groundwater variability, especially if hydroclimatological knowledge is to be fully integrated into water resource management and planning.
机译:水加工学是一个很大程度上涉及在气候环境中理解水文循环的工作的广泛纪律。承认这一点,并赋予气候与水之间的蓬勃发展的兴趣在努力改进对水资源对气候变异性的影响的改进后,这一进展报告称其对大规模气候模式之间的联系溪流,湖泊和地下水中的变异性和水文变异性。对最近文献的调查发现,在水文变异性分析中,已经采用了一种电信连接指数。代表气候变异模式的指数,如El Nino Southern振荡,北大西洋振荡,太平洋北美模式,太平洋横向振荡和大西洋经济振荡主导了气候和水文变异性的文献。虽然流流程和湖泊和地下水位时间序列中的气候变异模式的可辨别信号的例子比比皆是,但周期性与陆地间振动模式之间的周期振荡之间的关联和水文的陆地分支内的变异性远非简单,是单调(线性和非线性)和非单调,以及分析时期的条件,季节和地理区域。虽然在过去五年中存在相当大的进展揭示了气候和水文变异性之间联系的气候机制,但文献的忧虑特征是如何通过纯粹统计透镜来观看气候和水文变异性,这很少关注在大气和海洋物理和动态方面诊断关系。因此,在获得对流动流量,湖泊和地下水变异性的令人满意的循环性理解时仍有重要进展,特别是如果要完全集成到水资源管理和规划中的循环学知识。

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