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Impacts of shallow convection on MJO simulation: a moist static energy and moisture budget analysis.

机译:浅对流对MJO模拟的影响:潮湿的静态能量和水分预算分析。

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摘要

The role of shallow convection in Madden-Julian oscillation (MJO) simulation is examined in terms of the moist static energy (MSE) and moisture budgets. Two experiments are carried out using the NCAR Community Atmosphere Model, version 3.0 (CAM3.0): a "CTL" run and an "NSC" run that is the same as the CTL except with shallow convection disabled below 700 hPa between 20 degrees S and 20 degrees N. Although the major features in the mean state of outgoing longwave radiation, 850-hPa winds, and vertical structure of specific humidity are reasonably reproduced in both simulations, moisture and clouds are more confined to the planetary boundary layer in the NSC run. While the CTL run gives a better simulation of the MJO life cycle when compared with the reanalysis data, the NSC shows a substantially weaker MJO signal. Both the reanalysis data and simulations show a recharge-discharge mechanism in the MSE evolution that is dominated by the moisture anomalies. However, in the NSC the development of MSE and moisture anomalies is weaker and confined to a shallow layer at the developing phases, which may prevent further development of deep convection. By conducting the budget analysis on both the MSE and moisture, it is found that the major biases in the NSC run are largely attributed to the vertical and horizontal advection. Without shallow convection, the lack of gradual deepening of upward motion during the developing stage of MJO prevents the lower troposphere above the boundary layer from being preconditioned for deep convection.
机译:根据湿静态能量(MSE)和水分预算,研究了浅对流在Madden-Julian振荡(MJO)模拟中的作用。使用NCAR社区大气模型3.0版(CAM3.0)进行了两个实验:“ CTL”运行和与CTL相同的“ NSC”运行,不同之处在于在20度S之间低于700 hPa时禁用了浅对流和20度N。虽然在两个模拟中均合理地再现了长波辐射的平均状态,850 hPa的风和特定湿度的垂直结构的主要特征,但在NSC中,水分和云更多地局限于行星边界层跑。与重新分析数据相比,CTL运行可以更好地模拟MJO生命周期,但NSC显示的MJO信号要弱得多。再分析数据和模拟都显示了MSE演化过程中的充放电机制,该机制主要受湿度异常的影响。但是,在NSC中,MSE和湿度异常的发育较弱,并且在发育阶段仅限于浅层,这可能会阻止深对流的进一步发展。通过对MSE和水分进行预算分析,发现NSC运行中的主要偏差主要归因于垂直和水平对流。在没有浅对流的情况下,在MJO的发展阶段,缺乏向上的渐进式渐进运动,就无法对边界层上方的较低对流层进行深对流的预处理。

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