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Potential role of the quasi-biennial oscillation in the stratosphere-troposphere exchange as found in water vapor in general circulation model experiments

机译:在一般环流模型实验中水蒸气中发现的准两年振荡在平流层 - 对流层交换中的潜在作用

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摘要

The tropical tropopause is considered to be the main region of upward transport of tropospheric air carrying water vapor and other tracers to the tropical stratosphere. The lower tropical stratosphere is also the region where the quasi-biennial oscillation (QBO) in the zonal wind is observed. The QBO is positioned in the region where the upward transport of tropospheric tracers to the ovenworld takes place. Hence the QBO can in principle modulate these transports by its secondary meridional circulation. This modulation is investigated in this study by an analysis of general circulation model (GCM) experiments with an assimilated QBO, The experiments show, first, that the temperature signal of the QBO modifies the specific humidity in the air transported upward and, second, that the secondary meridional circulation modulates the velocity of the upward transport. Thus during the eastward phase of the QBO the upward moving air is moister and the upward velocity is less than during the westward phase of the QBO. It was further found that the QBO period is too short to allow an equilibration of the moisture in the QBO region. This causes a QBO signal of the moisture which is considerably smaller than what could be obtained in the limiting case of indefinitely long QBO phases. This also allows a high sensitivity of the mean moisture over a QBO cycle to the El Nino-Southern Oscillation (ENSO) phenomena or major tropical volcanic eruptions. The interplay of sporadic volcanic eruptions, ENSO, and QBO can produce low-frequency variability in the water vapor content of the tropical stratosphere, which renders the isolation of the QBO signal in observational data of water vapor in the equatorial lower stratosphere difficult.
机译:热带对流层顶被认为是携带水蒸气和其他示踪剂的对流层空气向上输送到热带平流层的主要区域。较低的热带平流层也是在纬向风中观测到准两年一次振荡(QBO)的区域。 QBO位于对流层示踪剂向上传输到烤箱世界的区域。因此,QBO原则上可以通过其次级子午循环来调节这些传输。在这项研究中,通过对同化QBO进行的一般循环模型(GCM)实验的分析,研究了这种调制。实验表明,首先,QBO的温度信号会改变向上输送的空气中的比湿度,其次,二次子午环流调节向上传输的速度。因此,在QBO的东段期间,向上移动的空气较湿,且向上的速度小于QBO的西段期间。进一步发现,QBO周期太短以至于不能平衡QBO区域中的水分。这导致水分的QBO信号大大小于无限长QBO相的极限情况下所能获得的水分。这也使QBO周期中的平均湿度对厄尔尼诺-南方涛动(ENSO)现象或主要的热带火山爆发高度敏感。零星火山喷发,ENSO和QBO的相互作用会在热带平流层水汽含量中产生低频变化,这使得在赤道低平流层水汽观测数据中隔离QBO信号变得困难。

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    Giorgetta, M.; Bengtsson, L.;

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  • 年度 1999
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  • 正文语种 eng
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