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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Momentum budget of the migrating diurnal tide in the Whole Atmosphere Community Climate Model at vernal equinox
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Momentum budget of the migrating diurnal tide in the Whole Atmosphere Community Climate Model at vernal equinox

机译:春分时整个大气群落气候模型中日移潮的动量预算

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The momentum budget of the migrating diurnal tide (DW1) at the vernal equinox is studied using the Whole Atmosphere Community Climate Model, version 4 (WACCM4). Classical tidal theory provides an appropriate first-order prediction of the DW1 structure, while gravity wave (GW) forcing and advection are the two most dominant terms in the momentum equation that account for the discrepancies between classical tidal theory and the calculation based on the full primitive equations. It differs from the conclusion by McLandress (2002a) that the parameterized GW effect is substantially weaker than advection terms based on the Canadian Middle Atmosphere Model (CMAM). In the region where DW1 maintains a large amplitude, GW forcing in the wave breaking region always damps DW1 and advances its phase. The linear advection largely determined by the latitudinal shear of the zonal mean zonal wind makes a dominant contribution to the phase change of DW1 in the zonal wind compared to the GW forcing and nonlinear advection. However, nonlinear advection is more important than GW forcing and linear advection in modulating the amplitude and phase of DW1 in the meridional wind. The DW1 amplitudes in temperature and winds are smaller than the TIMED observations, suggesting that GW forcing is overestimated in the WACCM4 and results in a large damping of DW1.
机译:使用版本4(WACCM4)的整个大气群落气候模型研究了春分时的迁徙日潮(DW1)的动量预算。经典潮汐理论为DW1结构提供了合适的一阶预测,而重力波(GW)强迫和对流是动量方程中两个最主要的项,它们解释了经典潮汐理论与基于全潮的计算之间的差异。基本方程式。它与McLandress(2002a)得出的结论不同,参数化的GW效应比基于加拿大中层大气模型(CMAM)的对流项弱得多。在DW1保持较大振幅的区域中,在波浪破碎区域中的GW强迫总是会衰减DW1并使其相位提前。与GW强迫和非线性对流相比,线性对流在很大程度上取决于纬向平均纬向风的纬向剪切,对纬向DW1的相变起主要作用。但是,在调节子午风中DW1的振幅和相位方面,非线性对流比GW强迫和线性对流更重要。 DW1在温度和风中的振幅小于TIMED观测值,这表明在WACCM4中高估了GW强迫,并导致DW1的大阻尼。

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