首页> 外文期刊>Journal of Hydrology >Baseflow response to climate variability induced droughts in the Apalachicola-Chattahoochee-Flint River Basin, USA
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Baseflow response to climate variability induced droughts in the Apalachicola-Chattahoochee-Flint River Basin, USA

机译:美国阿巴拉契科拉-恰塔胡奇-弗林特河流域对气候变化引起的干旱的底流响应

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Droughts have been a major factor leading to the Tri-State Water Wars in the southeastern United States. One of the primary issues related to the conflict is the reduction in baseflow levels in the Flint River during droughts. This affects the availability of freshwater resources to support the endangered mussel species in the Flint and Apalachicola Rivers and threatens the shellfish industry in the Apalachicola Bay. Study of large-scale climate phenomena as well as the interactions of interannual with decadal and multidecadal oceanic-atmospheric phenomena can provide valuable information regarding regional climatic conditions such as droughts and their impact on water resources. This study was conducted to quantify the impacts of climate variability cycles on baseflow levels in the Flint River. The individual and coupled impacts of the El Nino-Southern Oscillation (ENSO), Pacific Decadal Oscillation (PDO), Atlantic Multidecadal Oscillation (AMO), and North Atlantic Oscillation (NAO) on baseflow were quantified. The non-parametric Joint Rank Fit (JRFit) procedure was used to provide a robust test of the significance of interactions between the phases of ENSO-PDO, ENSO-AMO and ENSO-NAO baseflows. Simple-main effect comparisons were also performed using the JRFit model to estimate significant difference between the positive and negative phase baseflows of PDO, AMO and NAO associated with El Nino or La Nina phases. The results indicate that the phases of ENSO, AMO and NAO significantly affect baseflows in the Flint River. Interaction tests showed that the PDO and AMO phases modulate ENSO phase baseflows. La Nina associated with positive phases of PDO and AMO resulted in greater decrease in baseflow levels of approximately 28% and 33%, respectively. However, La Nina associated with negative phase of AMO showed above normal baseflows. The results illustrate the importance of coupled analyses of climate variability by providing a better understanding of the severity of droughts and their impact on baseflows. The results obtained from this study can be used by water managers in the region as a guide for the issuance of drought severity-based water restrictions. (C) 2015 Elsevier B.V. All rights reserved.
机译:干旱一直是导致美国东南部三州水战的主要因素。与冲突有关的主要问题之一是干旱期间弗林特河底流水平的降低。这影响了淡水资源的供应,以支持弗林特河和阿巴拉契科拉河中濒临灭绝的贻贝物种,并威胁阿巴拉契科拉湾的贝类产业。对大规模气候现象以及年际与年代际和十年际海洋-大气现象相互作用的研究可以提供有关区域气候条件(如干旱及其对水资源的影响)的有价值的信息。进行这项研究是为了量化气候变化周期对弗林特河底流水平的影响。量化了厄尔尼诺-南方涛动(ENSO),太平洋年代际涛动(PDO),大西洋多年代际涛动(AMO)和北大西洋涛动(NAO)对基准流的单独影响和耦合影响。非参数联合秩拟合(JRFit)过程用于对ENSO-PDO,ENSO-AMO和ENSO-NAO基流各相之间的相互作用的重要性进行可靠的测试。还使用JRFit模型进行了简单主效应比较,以估计与El Nino或La Nina相相关的PDO,AMO和NAO的正相和负相基流之间的显着差异。结果表明,ENSO,AMO和NAO的阶段显着影响了弗林特河的基流。相互作用测试表明,PDO和AMO相调节ENSO相的基流。与PDO和AMO正相相关的La Nina导致底流水平分别下降了约28%和33%。然而,与AMO负相相关的La Nina表现出高于正常基流。结果通过更好地了解干旱的严重程度及其对基流的影响,说明了对气候变异性进行耦合分析的重要性。从该研究中获得的结果可以被该地区的水管理人员用作指导发布基于干旱严重程度的水限制的指南。 (C)2015 Elsevier B.V.保留所有权利。

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