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Variability in the speed of the Brewer–Dobson circulation as observed by Aura/MLS

机译:由Aura / MLS观察到的酿酒器 - 多丝循环速度的变化

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We use Aura/MLS stratospheric water vapour (H2O) measurements as tracer for dynamics and infer interannual variations in the speed of the Brewer–Dobson circulation (BDC) from 2004 to 2011. We correlate one-year time series of H2O in the lower stratosphere at two subsequent pressure levels (68 hPa, ~18.8 km and 56 hPa, ~19.9 km at the Equator) and determine the time lag for best correlation. The same calculation is made on the horizontal on the 100 hPa (~16.6 km) level by correlating the H2O time series at the Equator with the ones at 40° N and 40° S. From these lag coefficients we derive the vertical and horizontal speeds of the BDC in the tropics and extra-tropics, respectively. We observe a clear interannual variability of the vertical and horizontal branch. The variability reflects signatures of the Quasi Biennial Oscillation (QBO). Our measurements confirm the QBO meridional circulation anomalies and show that the speed variations in the two branches of the BDC are out of phase and fairly well anti-correlated. Maximum ascent rates are found during the QBO easterly phase. We also find that transport of H2O towards the Northern Hemisphere (NH) is on the average two times faster than to the Southern Hemisphere (SH) with a mean speed of 1.15 m s?1 at 100 hPa. Furthermore, the speed towards the NH shows much more interannual variability with an amplitude of about 21% whilst the speed towards the SH varies by only 10%. An amplitude of 21% is also observed in the variability of the ascent rate at the Equator which is on the average 0.2 mm s?1.
机译:我们使用Aura / MLS平流层水蒸气(H2O)测量作为动态的示踪剂,并从2004年到2011年推断出Brewer-Dobson循环速度(BDC)的续航变化。我们在较低平流层中关联一年的H2O系列在后续压力水平(68 HPA,〜18.8km和56 HPA,赤道〜19.9公里),并确定最佳相关性的时间滞后。通过将赤道的H2O时间序列与40°N和40°S处的H2O时间序列相关联,在100HPa(〜16.6km)水平上进行相同的计算。从这些滞后系数,我们导出了垂直和水平速度在热带地区的BDC和热带地区。我们遵守垂直和水平分支的明显依赖性变异性。可变性反映了准双年生振荡(QBO)的签名。我们的测量确认了QBO子午线循环异常,并表明BDC的两个分支的速度变化不相位,并且相当良好地反相关。在QBO Easterly阶段期间发现了最大上升率。我们还发现,朝向北半球(NH)的H2O运输在平均值比到南半球(SH)速度快两倍,其平均速度为1.15米S?1在100 HPA。此外,朝向NH的速度显示出更多的依y变异性,幅度约为21%,同时朝向SH的速度仅为10%。还在平均0.2mm S-1的赤道上的上升速率的可变性中观察到21%的幅度。

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