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An Update on the Ice Climatology of the Hudson Bay System

机译:哈德逊湾系统的冰气候学更新

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The objective of this paper is to examine the thermodynamic and dynamic forcing of sea ice within the Hudson Bay System, including Hudson Bay, Hudson Strait, and Foxe Basin. Changes in fall and spring sea ice extents (SIEs) are examined in relation to seasonal surface air temperatures (SATs) and winds, as are changes in freeze-up dates and breakup dates. The proportional leverage of the fall (lag1) and spring SATs and winds on ice is statistically examined per basin. Results show SATs have increased significantly since the mid-1990s and that increases in the fall are higher than the spring period. Fall SATs are highly related to fall SIEs (R ~(2) = 0.79–0.82). For every 1 °C increase in SAT, SIE decreases by 14% (% of basin area) within the Hudson Bay System; a 1 °C increase delays freezeup by 0.7 to 0.9 weeks on average. Spring SIEs and breakup dates are shown to be highly correlated with fall (lag1) and spring SATs, and with U and V component winds. Proportionately, spring and fall SATs combined play a dominant role (70–80%) in SIE, and the remaining leverage is attributed to dynamic forcing (winds). The relative leverage of fall (lag1) SATs and surface winds are shown to be significant and vary by basin. The open water season has on average increased by 3.1 (±0.6) weeks in Hudson Bay, 4.9 (±0.8) weeks in Hudson Strait, and 3.5 (±0.9) weeks in Foxe Basin.
机译:本文的目的是研究哈德逊湾系统(包括哈德逊湾,哈德逊海峡和福克斯盆地)内海冰的热力学和动态强迫。检验了秋季和春季海冰范围(SIE)的变化与季节性地面气温(SATs)和风的关系,以及冻结日期和分解日期的变化。对每个流域统计分析了秋季(lag1)和春季SAT和冰上风的比例杠杆作用。结果表明,自1990年代中期以来,SAT的增长显着,秋季的增长高于春季。秋季SAT与秋季SIE高度相关(R〜(2)= 0.79–0.82)。在哈德逊湾系统中,SAT的每升高1°C,SIE就会降低14%(流域面积的百分比);温度每升高1°C,冻结时间平均延长0.7到0.9周。春季SIE和分解日期显示与秋季(lag1)和春季SAT,以及U和V分量风高度相关。相应地,春季和秋季的SAT合并在一起在SIE中起着主要作用(70-80%),而其余的杠杆作用则归因于动态强迫(风)。秋季(lag1)SAT和地面风的相对影响力显示出显着性,并且随盆地而变化。哈德逊湾的露天水季平均增加了3.1(±0.6)周,哈德逊海峡的平均水域增加了(4.9)(±0.8)周,福克斯盆地的平均水域增加了3.5(±0.9)周。

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