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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The Influences of the Multi‐Scale Sea Surface Temperature Anomalies in the North Pacific on the Jet Stream in Winter
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The Influences of the Multi‐Scale Sea Surface Temperature Anomalies in the North Pacific on the Jet Stream in Winter

机译:北太平洋多尺度海面温度异常对冬季急流的影响

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Abstract Using Climate Forecast System Reanalysis (CFSR) data and numerical simulations, the impacts of the multi‐scale sea surface temperature (SST) anomalies in the North Pacific on the boreal winter atmospheric circulations are investigated. The basin‐scale SST anomaly as the Pacific Decadal Oscillation (PDO) pattern, a narrow meridional band of frontal‐scale smoothed SST anomaly in the subtropical front zone (STFZ) and the spatial dispersed eddy‐scale SST anomalies within the STFZ are the three types of forcings. The results of statistical methods find that all three oceanic forcings may correspond to the winter North Pacific jet changing with the similar pattern. Furthermore, several atmospheric general circulation model simulations are used to reveal the differences and detail processes of the three forcings. The basin‐scale cold PDO‐pattern SST anomaly first causes negative turbulent heat flux anomalies, atmospheric cooling, and wind deceleration in the lower atmosphere. Subsequently, the cooling temperature with an amplified southern lower temperature gradient and baroclinity brings a lagging middle warming because of the enhanced atmospheric eddy heat transport. The poleward and upward development of baroclinic fluctuations eventually causes the acceleration of the upper jet. The smoothed frontal‐ and eddy‐scales SST anomalies in the STFZ cause comparable anomalous jet as the basin‐scale by changing the upward baroclinic energy and Eliassen‐Palm fluxes. The forcing effects of multi‐scales SST anomalies coexist simultaneously in the mid‐latitude North Pacific, which can cause similar anomalous upper atmospheric circulations. This is probably why it is tricky to define the certain oceanic forcing to the specific observed atmospheric circulation variation.
机译:摘要利用再分析气候预测系统(CFSR)数据和数值模拟海面多人规模的影响在北太平洋温度(SST)异常在北方冬季大气发行量调查。太平洋年代际振荡(PDO)模式狭窄的子午帮额规模平滑在副热带锋区海温异常(STFZ)和空间分散的涡流检测尺度SST在STFZ是三种类型的异常营力。所有三个海洋营力可能对应冬季北太平洋飞机改变了类似的模式。大气环流是用来模拟模型揭示的差异和详细过程三个营力。PDO海温异常模式首先导致了负面大气湍流热通量异常冷却,在低风减速的气氛。放大南部较低的温度中间梯度和baroclinity带来一个滞后大气变暖,因为增强涡流热传输。斜压波动最终的发展导致上飞机的加速度。平滑额与涡流检测尺度SST异常在STFZ可比异常喷射的原因盆地规模向上通过改变斜压能源和Eliassen棕榈通量。多人的影响尺度SST异常共存同时在中期高北太平洋纬度这可能会导致类似的异常上吗大气的发行量。是很难定义某些海洋强迫具体观察大气环流变异。

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