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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Modulating Effects of Mesoscale Oceanic Eddies on Sea Surface Temperature Response to Tropical Cyclones Over the Western North Pacific
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Modulating Effects of Mesoscale Oceanic Eddies on Sea Surface Temperature Response to Tropical Cyclones Over the Western North Pacific

机译:Mesoscale海洋射精对西北太平洋西部热带气旋海面温度响应的调节效果

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摘要

The impact of mesoscale oceanic eddies on the temporal and spatial characteristics of sea surface temperature (SST) response to tropical cyclones is investigated in this study based on composite analysis of cyclone-eddy interactions over the western North Pacific. The occurrence times of maximum cooling, recovery time, and spatial patterns of SST response are specially evaluated. The influence of cold-core eddies (CCEs) renders the mean occurrence time of maximum SST cooling to become about half a day longer than that in eddy-free condition, while warm-core eddies (WCEs) have little effect on this facet. The recovery time of SST cooling also takes longer in presence of CCEs, being overall more pronounced for stronger or slower tropical cyclones. The effect of WCEs on the recovery time is again not significant. The modulation of maximum SST decrease by WCEs for category 2–5 storms is found to be remarkable in the subtropical region but not evident in the tropical region, while the role of CCEs is remarkable in both regions. The CCEs are observed to change the spatial characteristics of SST response, with enhanced SST decrease initially at the right side of storm track. During the recovery period the strengthened SST cooling by CCEs propagates leftward gradually, with a feature similar as both the westward-propagating eddies and the recovery of cold wake. These results underscore the importance of resolving mesoscale oceanic eddies in coupled numerical models to improve the prediction of storm-induced SST response.
机译:本研究研究了Mescuste Oceanic Eddies对热带气旋对热带气旋的时间和空间特征的影响,基于北太平洋西部旋风涡流互动的复合分析。特别评估SST响应的最大冷却,恢复时间和空间模式的发生时间。冷核Eddies(CCE)的影响使得最大的SST冷却的平均发生时间变得大约半天的时间长度比无涡状物状况长,而温暖的核心漩涡(WCE)对这方面几乎没有影响。 SST冷却的恢复时间也在CCE的存在下需要更长时间,对于更强大或更慢的热带气旋更加明显。 WES对恢复时间的影响再次不显着。在亚热带区域中发现WCE的最大SST减少的调制在亚热带区域中是显着的,但在热带地区不明显,而CCE的作用在这两个地区都是显着的。观察CCE以改变SST响应的空间特性,最初在风暴轨道右侧的增强SST降低。在恢复期间,CCE加强的SST冷却逐渐向左传播,具有与西方传播漩涡相似的特征和冷唤醒的复苏。这些结果强调了在耦合数值模型中解析Messcale海洋漩涡的重要性,以改善风暴引起的SST响应的预测。

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