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Probabilistic Assessment of Correlations of Water Levels in Polish Coastal Lakes with Sea Water Level with the Application of Archimedean Copulas

机译:海水级与海水水平与海水水平水平水平相关性评估

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The hydrology of coastal lakes differs significantly from that of inland water bodies due to the influence of the neighboring sea. Observed climatic changes are expected to enhance the effect of the sea on coastal lake ecosystems, which makes research on sea–lake interactions even more significant. In this study, on the basis of maximum annual and monthly values of water level, dependencies among the water levels of six lakes located along the southern coast of the Baltic Sea in Poland, and the Baltic Sea water levels were analyzed. First, the Spearman rank correlation and the linear regression method were applied. Then, selected copulas were used to find joint distributions of the studied time series. In the next stage, the degrees of synchronous and asynchronous occurrences of maximum water levels in lakes and the sea were calculated. The study revealed that correlations between the maximum annual water levels in coastal lakes and in the Baltic Sea in the selected gauge stations were very strong and statistically significant. These results were confirmed by a synchronicity analysis carried out with the help of a copula function. The highest relationship was detected in the case of Lake Resko Przymorskie (correlation coefficient 0.86, synchronicity 75.18%), while the lowest were observed in Lakes Jamno (0.62 and 58.20%, respectively) and Bukowo (0.60 and 56.82%, respectively). The relation strength between maximum water levels of the sea and coastal lakes may increase in the future due to sea level rises caused by climate warming.
机译:由于邻近海洋的影响,沿海湖泊水文与内陆水体的水文显着不同。预计观察到的气候变化将增强海洋对沿海湖泊生态系统的影响,这使得海湖相互作用更加重要。在这项研究中,在最高年度和月度的水位价值的基础上,分析了波兰波罗的海南部海岸的六湖水水平的依赖性,并分析了波罗的海水平。首先,应用Spearman等级相关性和线性回归方法。然后,使用所选的Copulas来找到所研究的时间序列的联合分布。在下一阶段,计算了湖泊和海洋中最大水位的同步和异步发生程度。该研究表明,在所选规范站中沿海湖泊和波罗的海的最大年度水平与波罗的海之间的相关性非常强大和统计学意义。这些结果是通过在拷贝功能的帮助下进行的同步性分析来证实。在Resko湖Przymorskie(相关系数0.86,同步性75.18%)的情况下检测到最高的关系,而在湖泊贾姆诺(分别为0.62和58.20%)和Bukowo(分别为0.60和56.82%)中最低。由于气候变暖引起的海平面,未来,海洋和沿海湖泊的最大水平之间的关系强度可能会增加。

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