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The non-conservation of potential vorticity by a dynamical core compared with the effects of parametrized physical processes

机译:与参数化物理过程的影响相比,动力核心对潜在涡度的不守恒

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摘要

Numerical models of the atmosphere combine a dynamical core, which approximates solutions to the adiabatic, frictionless governing equations for fluid dynamics, with tendencies arising from the parametrization of other physical processes. Since potential vorticity (PV) is conserved following fluid flow in adiabatic, frictionless circumstances, it is possible to isolate the effects of non-conservative processes by accumulating PV changes in an air-mass-relative framework. This PV tracer technique' is used to accumulate separately the effects on PV of each of the different non-conservative processes represented in a numerical model of the atmosphere. Dynamical cores are not exactly conservative because they introduce, explicitly or implicitly, some level of dissipation and adjustment of prognostic model variables which acts to modify PV. Here, the PV tracers technique is extended to diagnose the cumulative effect of the non-conservation of PV by a dynamical core and its characteristics relative to the PV modification by parametrized physical processes.
机译:大气层的数值模型结合了一个动力核心,该动力核心近似于绝热,无摩擦的流体动力学控制方程的解,并且具有其他物理过程的参数化趋势。由于在绝热,无摩擦的情况下流体流动后会保留潜在的涡度(PV),因此可以通过在相对于空气质量的框架中累积PV变化来隔离非保守过程的影响。该“ PV示踪技术”用于分别累积大气数值模型中表示的每个不同的非保守过程对PV的影响。动态核心并不是完全保守的,因为它们显式地或隐式地引入了一定程度的耗散和对预测模型变量的调整,这些变量用于修改PV。在这里,PV示踪剂技术得到扩展,可以诊断动态核对PV的非保守性的累积效应及其相对于通过参数化物理过程进行的PV改性的特性。

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