首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >A Lagrangian vertical coordinate version of the ENDGame dynamical core. Part II: Evaluation of Lagrangian conservation properties
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A Lagrangian vertical coordinate version of the ENDGame dynamical core. Part II: Evaluation of Lagrangian conservation properties

机译:Lagrangian垂直坐标版的最终动态核心。 第二部分:拉格朗日保护特性评估

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A baroclinic instability test case is used to compare the Lagrangian conservation properties of three versions of a semi-implicit semi-Lagrangian dynamical core: one using a height-based vertical coordinate and two using a Lagrangian vertical coordinate. The Lagrangian coordinate versions differ in the choice of target levels to which model levels are reset after each stepthe first uses the initial model level heights while the second uses quasi-Lagrangian target levels. A range of diagnostics related to Lagrangian conservation are computed, including global entropy, unavailable energy, cross-isentrope mass flux, and consistency of potential temperature and potential vorticity with passive tracers and parcel trajectories. The global entropy, unavailable energy, and cross-isentrope fluxes do not suggest any clear advantage or disadvantage from the use of a Lagrangian vertical coordinate, though the cross-isentrope flux reveals a flaw in the formulation of the remapping of potential temperature in the Lagrangian coordinate model at the top boundary. The use of a Lagrangian vertical coordinate with quasi-Lagrangian target levels improves the consistency among potential temperature as a dynamical variable, potential temperature as a tracer and potential temperature on Lagrangian particle trajectories. It also improves consistency between a potential vorticity tracer and potential vorticity on Lagrangian particle trajectories. However, it degrades the consistency between model and tracer potential vorticity, as well as between model potential vorticity and potential vorticity on Lagrangian trajectories. This degradation appears to be related to the slopes of model levels, which are greater in the version with quasi-Lagrangian target levels.
机译:一条曲中不稳定性测试盒用于比较三个版本的半隐式半拉格朗日动态核心的拉格朗日保护特性:使用基于高度的垂直坐标和使用拉格朗日垂直坐标的一个版本。拉格朗日坐标版本在每个步骤后首次使用初始模型级别高度后重置的目标级别的目标级别的选择不同,而第二种使用准拉格朗日目标级别。计算与拉格朗日保护有关的一系列诊断,包括全球熵,能量,交叉不可用,以及潜在的温度和潜在涡流与被动示踪剂和包裹轨迹的势级的一致性。全球熵,不可用的能量和跨阶级的助势并不建议使用拉格朗日垂直坐标的任何明显的优势或缺点,尽管跨越式透露缺陷在拉格朗日中潜在温度的复制中的制定中缺陷坐标模型在顶部边界。利用准拉格朗日目标水平的拉格朗日垂直坐标在潜在的温度下的一致性提高了作为动态变量,电位温度作为拉格朗日粒子轨迹的潜在温度。它还提高了潜在的涡旋示踪剂与拉格朗日粒子轨迹上的潜在涡流之间的一致性。然而,它降低了模型和示踪势涡度之间的一致性,以及在拉格朗日轨迹上的模型潜在涡度和潜在涡流之间。这种降级似乎与模型级别的斜率有关,其在具有准拉格朗日目标水平的版本中更大。

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