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Vertical structure and physical processes of the Madden‐Julian Oscillation: Biases and uncertainties at short range

机译:Madden-Julian振荡的垂直结构和物理过程:短期内的偏差和不确定性

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摘要

An analysis of diabatic heating and moistening processes from 12 to 36 h lead time forecasts from 12 Global Circulation Models are presented as part of the “Vertical structure and physical processes of the Madden‐Julian Oscillation (MJO)” project. A lead time of 12–36 h is chosen to constrain the large‐scale dynamics and thermodynamics to be close to observations while avoiding being too close to the initial spin‐up of the models as they adjust to being driven from the Years of Tropical Convection (YOTC) analysis. A comparison of the vertical velocity and rainfall with the observations and YOTC analysis suggests that the phases of convection associated with the MJO are constrained in most models at this lead time although the rainfall in the suppressed phase is typically overestimated. Although the large‐scale dynamics is reasonably constrained, moistening and heating profiles have large intermodel spread. In particular, there are large spreads in convective heating and moistening at midlevels during the transition to active convection. Radiative heating and cloud parameters have the largest relative spread across models at upper levels during the active phase. A detailed analysis of time step behavior shows that some models show strong intermittency in rainfall and differences in the precipitation and dynamics relationship between models. The wealth of model outputs archived during this project is a very valuable resource for model developers beyond the study of the MJO. In addition, the findings of this study can inform the design of process model experiments, and inform the priorities for field experiments and future observing systems.
机译:作为“ Madden-Julian振荡的垂直结构和物理过程”项目的一部分,对12种全球循环模型中从12到36 h提前期的非绝热加热和润湿过程进行了分析。选择12-36 h的前置时间来约束大型动力学和热力学,使其与观测值接近,同时避免因过于接近模型的初始旋转速度而适应模型,因为它们适应了热带对流年的驱动(YOTC)分析。将垂直速度和降水与观测值和YOTC分析进行比较表明,尽管通常会高估抑制阶段的降雨,但在大多数模型中,与MJO相关的对流阶段在此提前期受到约束。尽管大范围的动力学受到了合理的约束,但湿热分布具有较大的模型间分布。特别是,在过渡到主动对流过程中,中层的对流加热和湿润分布很大。在活动阶段中,辐射热和云参数在较高级别的各个模型中具有最大的相对分布。对时间步长行为的详细分析表明,某些模型表现出较强的降雨间歇性,并且模型之间的降雨和动力学关系存在差异。除了研究MJO之外,在此项目中存储的大量模型输出对于模型开发人员来说是非常宝贵的资源。另外,这项研究的发现可以为过程模型实验的设计提供参考,并为野外实验和未来的观测系统提供参考。

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