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首页> 外文期刊>Journal of the Atmospheric Sciences >Angular momentum conservation and gravity wave drag parameterization: Implications for climate models
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Angular momentum conservation and gravity wave drag parameterization: Implications for climate models

机译:角动量守恒和重力波阻力参数化:对气候模型的影响

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摘要

The robustness of the parameterized gravity wave response to an imposed radiative perturbation in the middle atmosphere is examined. When momentum is conserved and for reasonable gravity wave drag parameters, the response to a polar cooling induces polar downwelling above the region of the imposed cooling, with consequent adiabatic warming. This response is robust to changes in the gravity wave source spectrum, background flow, gravity wave breaking criterion, and model lid height. When momentum is not conserved, either in the formulation or in the implementation of the gravity wave drag parameterization, the response becomes sensitive to the above-mentioned factors-in particular to the model lid height. The spurious response resulting from nonconservation is found to be nonnegligible in terms of the total gravity wave drag-induced downwelling.
机译:考察了参数化重力波对中间大气中的辐射扰动的响应的鲁棒性。当保持动量并且对于合理的重力波阻力参数时,对极地冷却的响应会在施加的冷却区域上方引起极地下行流,从而导致绝热变暖。该响应对于重力波源光谱,背景流,重力波破坏准则和模型盖高度的变化具有鲁棒性。如果在公式化或重力波阻力参数化的实施中不守恒的动量,则响应对上述因素(特别是模型盖的高度)变得敏感。就总重力波阻力引起的下沉而言,发现由于非守恒而产生的寄生响应是不可忽略的。

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