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Surface impacts of the Quasi Biennial Oscillation

机译:准两年一次振荡的表面影响

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Teleconnections between the Quasi Biennial Oscillation (QBO) and the Northern Hemisphere zonally averaged zonal winds, mean sea level pressure (mslp) and tropical precipitation are explored. The standard approach that defines the QBO using the equatorial zonal winds at a single pressure level is compared with the empirical orthogonal function approach that characterizes the vertical profile of the equatorial winds. Results are interpreted in terms of three potential routes of influence, referred to as the tropical, subtropical and polar routes. A novel technique is introduced to separate responses via the polar route that are associated with the stratospheric polar vortex, from the other two routes. A previously reported mslp response in January, with a pattern that resembles the positive phase of the North Atlantic Oscillation under QBO westerly conditions, is confirmed and found to be primarily associated with a QBO modulation of the stratospheric polar vortex. This mid-winter response is relatively insensitive to the exact height of the maximum QBO westerlies and a maximum positive response occurs with westerlies over a relatively deep range between 10 and 70?hPa. Two additional mslp responses are reported, in early winter (December) and late winter (February/March). In contrast to the January response the early and late winter responses show maximum sensitivity to the QBO winds at ~ 20 and ~ 70?hPa respectively, but are relatively insensitive to the QBO winds in between ( ~ 50?hPa). The late winter response is centred over the North Pacific and is associated with QBO influence from the lowermost stratosphere at tropical/subtropical latitudes in the Pacific sector. The early winter response consists of anomalies over both the North Pacific and Europe, but the mechanism for this response is unclear. Increased precipitation occurs over the tropical western Pacific under westerly QBO conditions, particularly during boreal summer, with maximum sensitivity to the QBO winds at 70?hPa. The band of precipitation across the Pacific associated with the Inter-tropical Convergence Zone (ITCZ) shifts southward under QBO westerly conditions. The empirical orthogonal function (EOF)-based analysis suggests that this ITCZ precipitation response may be particularly sensitive to the vertical wind shear in the vicinity of 70?hPa and hence the tropical tropopause temperatures.
机译:研究了准两年一次涛动(QBO)和北半球纬向平均纬向风,平均海平面压力(mslp)和热带降水之间的遥相关。将使用单一压力水平上的赤道纬向风定义QBO的标准方法与表征赤道风垂直剖面的经验正交函数方法进行了比较。用三种潜在的影响途径解释结果,这些途径被称为热带,亚热带和极地途径。引入了一种新颖的技术,通过与平流层极地涡旋相关的极地路线将响应与其他两条路线分开。一月以前报道的mslp响应,其模式类似于QBO西风条件下北大西洋涛动的正相,已得到证实,并发现其主要与平流层极涡的QBO调制有关。冬季中段的响应对最大QBO西风的确切高度相对不敏感,在10至70?hPa的相对较深范围内的西风发生最大的正响应。据报告,在冬季初(12月)和冬季末(2月/ 3月)还出现了另外两个mslp响应。与一月份的响应相反,冬季的早期和晚期响应分别对QBO风在〜20和〜70?hPa处表现出最大的敏感性,但是对介于(〜50?hPa)之间的QBO风相对不敏感。冬季晚期的响应集中在北太平洋,与太平洋地区热带/亚热带纬度最低平流层的QBO影响有关。冬季初期的响应包括北太平洋和欧洲的异常,但这种响应的机制尚不清楚。在西风QBO条件下,热带西太平洋地区降水增加,特别是在北方夏季,对70?hPa的QBO风的敏感性最大。在QBO西风条件下,与热带辐合带(ITCZ)相关的整个太平洋降水带向南移动。基于经验正交函数(EOF)的分析表明,这种ITCZ降水响应可能对70?hPa附近的垂直风切变特别敏感,因此对热带对流层顶温度也特别敏感。

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