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Gravity wave reflection and its influence on the consistency of temperature-and wind-based momentum fluxes simulated above Typhoon Ewiniar

机译:重力波反射及其对台风艾文尼亚上方模拟的温度和风基动量通量一致性的影响

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摘要

For a case study of Typhoon Ewiniar performed with a mesoscale model, we compare stratospheric gravity wave (GW) momentum flux determined from temperature variances by applying GW polarization relations and by assuming upward propagating waves, with GW momentum flux calculated from model winds which is considered as a reference. The temperature-based momentum-flux profile exhibits positive biases relative to the reference, which fluctuate significantly with altitude. The vertically-averaged magnitude of the positive biases is about 14% of the reference momentum flux. We found that this deviation from the reference stems from the interference between upward and downward propagating waves. The downward propagating GWs are due mainly to partial reflections of upward propagating waves at altitudes where the background wind and stability change with height. When the upward and downward propagating waves are decomposed and their momentum fluxes are calculated separately from temperature perturbations, the fraction of the momentum flux arising from the downward propagating waves is about 4.5-8.2% of that from the upward propagating waves. The net momentum flux of upward and downward propagating GWs agrees well with the reference from the model wind perturbations. The implications of this study for the GW momentum-flux observations from satellites are discussed.
机译:对于用中尺度模型进行的台风艾温娜的案例研究,我们比较了通过应用GW极化关系并假设向上传播的波,根据温度变化确定的平流层重力波(GW)动量通量,并考虑了由模型风计算得出的GW动量通量。作为参考。基于温度的动量-通量曲线显示出相对于参考的正偏差,该偏差随海拔高度明显波动。正偏压的垂直平均大小约为参考动量通量的14%。我们发现,与参考值的偏差源于向上和向下传播的波之间的干扰。向下传播的GWs主要是由于背景风和稳定性随高度变化的高度上的向上传播的波的部分反射所致。当分解向上和向下传播的波并分别计算它们的动量通量和温度扰动时,向下传播的波产生的动量通量的比例约为向上传播的波的动量通量的4.5-8.2%。向上和向下传播的GWs的净动量通量与模型风扰动的参考非常吻合。讨论了这项研究对卫星GW动量通量观测的意义。

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