喀拉海明显波浪高度的空间趋势分析

E. Kruglova, S. Myslenkov, V. Platonov
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摘要

过去几十年来,包括喀拉海在内的北极海冰范围一直在缩小。这一现象对风浪有直接影响,因为无冰水域的扩大影响了波浪高度。此外,冰盖的变化也会导致大气环流的变化,因此有必要同时对风浪进行分析,以加深对它们之间相互关系的理解。在这项研究中,使用了 WAVEWATCH III 模型和 NCEP/CFSR/CFSv2 再分析的波浪模型数据。计算在非结构计算网格上进行。网格覆盖巴伦支海和喀拉海以及整个大西洋北部。空间分辨率从喀拉海沿岸地区的约 700 米到喀拉海开阔地区的约 20 公里不等,时间跨度为 1979 年 1 月 1 日至 2021 年 12 月 31 日。随后,按月和按年计算了每个网格节点的平均显波高(SWH)、最大显波高和第 95 百分位数。对年度值进行了趋势及其重要性分析。对整个时期和无冰期都进行了计算。整个海域的年平均值呈正趋势,最大趋势出现在与巴伦支海交界处附近,几乎不超过 0.2 米/10 年。该海域北部和东北部的最大 SWH 值呈显著的正趋势。在喀拉海北部,SWH 第 95 百分位数的最大趋势值也很明显。在无冰期,该海域北部的年平均 SWH 值和第 95 百分位数的最大趋势值都很明显(最大趋势值分别约为 0.25 米/10 年和 0.5 米/10 年)。南部海域的年平均 SWH 呈显著的正趋势,而东北部海域的最大波高呈最大且显著的趋势。对风和冰机制对风浪变化的影响进行评估仍是一个需要讨论的问题。
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Spatial trend analysis of significant wave heights in the Kara Sea
 Over the past decades, the extent of sea ice in the Arctic, including the Kara Sea, has been diminishing. This phenomenon has a direct impact on wind waves as the increased expansion of ice-free water influences wave height. Furthermore, alterations in the ice cover also lead to modifications in atmospheric circulation, necessitating a concurrent analysis of wind and waves to refine the understanding of their interrelationships. In this study, wave modeling data were employed using the WAVEWATCH III model and NCEP/CFSR/CFSv2 reanalyzes. Calculations were performed on a non-structural computational grid. The grid covers the Barents and Kara Seas, as well as the entire northern part of the Atlantic Ocean. The spatial resolution varies from ~ 700 m for the coastal zone of the Kara Sea, to ~ 20 km in the open part of the Kara Sea, covering the period from January 1, 1979 to December 31, 2021. Subsequently, average significant wave heights (SWH), maximum SWH, and the 95th percentile of SWH were computed for each grid node on both monthly and yearly basis. The annual values were analyzed for trends and their significance. Calculations were conducted for both the entire period and ice-free period. Positive trends in annual mean values were observed throughout the sea, with the maximum trend occurring near the boundary with the Barents Sea, barely exceeding 0.2 m/10 years. The northern and northeastern parts of the sea were characterized by significant positive trends of the maximum SWH values. Maximum trend values for the 95th percentile of SWH were also evident in the northern part of the Kara Sea. For the ice-free period, maximum trend values were notable for both the annual mean and the 95th percentile of SWH in the northern part of the sea (maximum trend values are approximately 0.25 m/10 years and 0.5 m/10 years, respectively). Significant positive trends in the annual mean SWH were characteristic of the southern part of the sea, while the largest and significant trends for maximum wave heights were observed in the northeast. The assessment of the contribution of wind and ice regimes to the variability of wind waves remains a subject of discussion.
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