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Northern poleward edge of regional Hadley cell over western Pacific during boreal winter: year-to-year variability, influence factors and associated winter climate anomalies

机译:北冬季哈德利电池北极缘哈德利电池:年度变异,影响因素和相关的冬季气候异常

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Compared to the zonal-mean Hadley cell (HC), our knowledge of the characteristics, influence factors and associated climate anomalies of the regional HC remains quite limited. Here, we examine interannual variability of the northern poleward HC edge over western Pacific (WPHCE) during boreal winter. Results suggest that interannual variability of the WPHCE is impacted by the El Nino-Southern Oscillation (ENSO) Modoki, North Pacific Oscillation (NPO) and North Atlantic Oscillation (NAO). The WPHCE tends to shift poleward during negative phase of the ENSO Modoki, and positive phases of the NPO and NAO, which highlights not merely the tropical forcing but also the extratropical signals that modulate the WPHCE. ENSO modoki, NPO and NAO modulate the WPHCE via inducing atmospheric anomalies over the western North Pacific. We further investigate the climatic impacts of the WPHCE on East Asia. The poleward shift of the northern descending branch of the WPHC results in anomalous upward (downward) motions and upper-level divergence (convergence) anomalies over south-central China (northern East-Asia), leading to increased (decreased) rainfall there. Moreover, pronounced cold surface air temperature anomalies appear over south-central China when the sinking branch of the WPHC moves poleward. Based on the temperature diagnostic analysis, negative surface temperature tendency anomalies over central China are mostly attributable to the cold zonal temperature advection and ascent-induced adiabatic cooling, while the negative anomalies over South China are largely due to the cold meridional temperature advection. These findings could improve our knowledge of the WPHCE variability and enrich the knowledge of forcing factors for East Asian winter climate.
机译:与霸主区平均哈德利细胞(HC)相比,我们对区域HC的特征,影响因素和相关气候异常的知识仍然相当有限。在这里,我们在北方冬季期间检查西太平洋(WPHCE)的北极HC边缘的际变化。结果表明,WPHCE的年际变化受EL Nino-Southern振荡(ENSO)Modoki,北太平洋振荡(NPO)和北大西洋振荡(NAO)的影响。 WPHCE在ENSO Modoki的负阶段和NPO和NaO的正阶段倾向于向侧面移位,这突出了不仅仅是热带迫使,而且还突出了调节WPHCE的卓越信号。 Enso Modoki,NPO和Nao通过诱导西北太平洋西部的大气异常调节WPHCE。我们进一步调查了WPHCE对东亚的气候影响。 WPHC的北下降分支的向外偏移导致了中南部(东亚北部)的异常向上(向下)运动和上层分歧(收敛)异常,导致那里的降雨量增加(减少)降雨量。此外,当WPHC的沉没分支向极端移动时,明显的冷表面空气温度异常出现在中国中部地区。基于温度诊断分析,中部地区的负面温度趋势异常主要归因于寒冷的危险温度平流和上升诱导的绝热冷却,而华南的阴性异常主要是由于冷的补充温度平流。这些调查结果可以提高我们对WPHCE变异性的了解,并丰富了东亚冬季气候的强迫因素的知识。

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