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Reevaluating the impacts of oceanic vertical resolution on the simulation of Madden-Julian Oscillation eastward propagation in a climate system model

机译:重新评估海洋垂直分辨率对气候系统模型中疯子 - 朱利安振荡的模拟的影响

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The upper ocean plays a critical role in determining the Madden-Julian Oscillation (MJO) characteristics through modulating the tropical atmosphere-ocean interaction. By increasing the oceanic vertical resolution, its impacts on the MJO eastward propagation are discussed in this study by using a climate system model. With a refined vertical resolution in the upper ocean, warmer surface ocean and shallower mixed layer depth are produced in the tropics, which induces associated atmospheric changes as the response to the ocean feedbacks. Enhanced November-April-mean vertically-integrated specific humidity is found around the equatorial region with the increased vertical resolution, which strengthens the zonal and meridional moisture gradients. The lead-lag correlation of MJO precipitation demonstrates that the simulated MJO eastward propagation is improved with increased oceanic vertical resolution by improving the simulations of convective instability at the east of the MJO convective center, the boundary layer moisture convergence, the low- and upper-level circulation, and the vertical structure of equivalent potential temperature and diabatic heating. Moreover, the zonal asymmetry of the tendency of specific humidity is also improved by increasing the oceanic vertical resolution. The vertically-integrated moisture budget analysis is applied to further investigate the dominance of the moistening and drying processes. Results reveal that the drying processes are successfully reproduced over the central Indian Ocean in the case of increased oceanic vertical resolution, whilst the moistening processes are not well captured over the Maritime Continent and the MJO "detour" region. It suggests that additional modifications are needed to further improve the MJO simulation.
机译:上部海洋在确定Madden-Julian振荡(MJO)特征通过调制热带气氛 - 海洋互动来发挥关键作用。通过增加海洋垂直分辨率,通过使用气候系统模型在本研究中讨论了对MJO东方传播的影响。在上海的精致垂直分辨率下,热带地区生产较温暖的表面海洋和较浅的混合层深度,这会导致相关的大气变化作为对海洋反馈的反应。增强的11月 - April-Chanc平均垂直集成的特定湿度在赤道区域周围发现,具有增加的垂直分辨率,其增强了地区和经络水分梯度。 MJO沉淀的引导滞后相关性表明,通过改善MJO对流中心的东部的对流不稳定的模拟,利用增加的海洋垂直分辨率,改善了模拟的MJO向东传播,边界层湿气收敛,低和上部水平循环,以及等效潜在温度和糖尿病加热的垂直结构。此外,通过增加海洋垂直分辨率,还改善了特定湿度趋势的区域不对称性。应用垂直集成的水分预算分析,以进一步研究润湿和干燥过程的优势。结果表明,在海洋垂直分辨率增加的情况下,干燥过程在中央印度洋上成功复制,同时在海洋大陆和MJO“弯曲”区域上没有很好地捕获润湿过程。它表明需要额外的修改来进一步改善MJO模拟。

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