论文标题

通过Cirrus Cloud反馈对MJO的平流层调制

Stratospheric Modulation of the MJO through Cirrus Cloud Feedbacks

论文作者

Lin, Jonathan, Emanuel, Kerry

论文摘要

最近的观察结果表明,在北方冬季,通过平流层准生物 - 生物 - 生物 - 生物振荡(QBO)的阶段对Madden Julian振荡(MJO)进行了显着调节。 MJO的复合材料表明,对流层冰云部分和水蒸气异常通常被共处,并且存在具有云级分为高度的向东倾斜。通过辐射转移计算,表明冰云比水蒸气异常具有更强的对流层辐射强迫,这突出了将对流层/下层平流层过程纳入MJO模型的重要性。通过在平流层中包括平均风和卷卷云的预后方程,该耦合的对流层线圈线性模型可以扩展,该模型被强迫并允许调节对流层辐射冷却,类似于先前的对流层水蒸气在先前的配方中的效果。在这些修改下,该模型仍然会产生类似于MJO的缓慢,向东的传播模式。显示平流层中的区域平均风的迹象被证明可以控制模式的向上波传播和对流层垂直结构。在不同的平流层风和互动卷云辐射下,在平流层西风下,MJO样模式的生长速率较弱,与观察到的MJO-QBO关系一致。这些结果直接归因于QBO伊斯特利的增强的压力模式。还表明,卷云的差异纬向对流在平流层西风下的生长速率较小,而不是伊斯特利。讨论了线性理论的含义和局限性。

Recent observations have indicated significant modulation of the Madden Julian Oscillation (MJO) by the phase of the stratospheric Quasi-Biennial Oscillation (QBO) during boreal winter. Composites of the MJO show that upper tropospheric ice cloud fraction and water vapor anomalies are generally collocated, and that an eastward tilt with height in cloud fraction exists. Through radiative transfer calculations, it is shown that ice clouds have a stronger tropospheric radiative forcing than do water vapor anomalies, highlighting the importance of incorporating upper tropospheric/lower stratospheric processes into simple models of the MJO. The coupled troposphere-stratosphere linear model previously developed by the authors is extended by including a mean wind in the stratosphere and a prognostic equation for cirrus clouds, which are forced dynamically and allowed to modulate tropospheric radiative cooling, similar to the effect of tropospheric water vapor in previous formulations. Under these modifications, the model still produces a slow, eastward propagating mode that resembles the MJO. The sign of zonal mean wind in the stratosphere is shown to control both the upward wave propagation and tropospheric vertical structure of the mode. Under varying stratospheric wind and interactive cirrus cloud radiation, the MJO-like mode has weaker growth rates under stratospheric westerlies than easterlies, consistent with the observed MJO-QBO relationship. These results are directly attributable to an enhanced barotropic mode under QBO easterlies. It is also shown that differential zonal advection of cirrus clouds leads to weaker growth rates under stratospheric westerlies than easterlies. Implications and limitations of the linear theory are discussed.

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