经常性的罗斯比波和澳大利亚东南部的热浪

S. M. Ali, M. Röthlisberger, Tess Parker, K. Kornhuber, O. Martius
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引用次数: 4

摘要

摘要在北半球,在几天到几周的时间内,在同一阶段反复出现的瞬变天气尺度的罗斯副波包,称为RRWPs,可能反复产生类似的地面天气条件。这种重复会导致持续的地表异常。在这里,我们首先利用ERA-Interim (ERA-I)再分析数据集证明了rrwp对南半球(SH)持续高温天气的重要性,然后研究了rrwp和区块对澳大利亚东南部(SEA)热浪的作用。威布尔回归分析显示,在统计上,rrwp与包括东南亚在内的南半球几个地区的热期持续时间的显著增加有关。2004年和2009年夏季东南亚热浪的两个案例研究说明了rrwp在形成周期性脊(反气旋位涡- PV -异常)中的作用,有助于热浪的持续。然后,利用基于气象站的数据集识别SEA热浪,我们发现在SEA上rrwp活动极端(高RSEA)的日子里,SEA热浪比气候学更频繁。在高RSEA日和热浪日,高空PV场的合成谱中存在环全球纬向波数4和5 (WN4、WN5)异常型,在SEA上空存在一个反气旋PV异常。PV和经向风速场的傅里叶分解进一步表明,在RSEA高的日子里,处于合适相位的WN4和WN5分量有助于在SEA上空形成脊。此外,我们发现印度洋和南太平洋在东南亚热浪期间出现异常阻塞,这可能有助于调节rrwp的相位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recurrent Rossby waves and south-eastern Australian heatwaves
Abstract. In the Northern Hemisphere, recurrence of transient synoptic-scale Rossby wave packets in the same phase over periods of days to weeks, termed RRWPs, may repeatedly create similar surface weather conditions. This recurrence can lead to persistent surface anomalies. Here, we first demonstrate the significance of RRWPs for persistent hot spells in the Southern Hemisphere (SH) using the ERA-Interim (ERA-I) reanalysis dataset and then examine the role of RRWPs and blocks for heatwaves over south-eastern Australia (SEA). A Weibull regression analysis shows that RRWPs are statistically associated with a significant increase in the duration of hot spells over several regions in the SH, including SEA. Two case studies of heatwaves in SEA in the summers of 2004 and 2009 illustrate the role of RRWPs in forming recurrent ridges (anticyclonic potential vorticity – PV – anomalies), aiding in the persistence of the heatwaves. Then, using a weather-station-based dataset to identify SEA heatwaves, we find that SEA heatwaves are more frequent than climatology during days with extreme RRWPs activity over SEA (high RSEA). On days with both high RSEA and heatwaves, circumglobal zonal wavenumber 4 and 5 (WN4, WN5) anomaly patterns are present in the composite mean of the upper-level PV field, with an anticyclonic PV anomaly over SEA. The Fourier decomposition of the PV and meridional wind velocity fields further reveals that the WN4 and WN5 components in the suitable phase aids in forming the ridge over SEA for days with high RSEA. In addition, we find anomalous blocking over the Indian and the South Pacific oceans during SEA heatwaves, which may help to modulate the phase of RRWPs.
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