Sensitivity of mountain wave drag estimates on separation methods and proposed improvements

IF 3 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of the Atmospheric Sciences Pub Date : 2023-04-03 DOI:10.1175/jas-d-22-0151.1
Z. Prochazkova, C. Kruse, M. Alexander, L. Hoffmann, J. Bacmeister, L. Holt, C. Wright, Kaoru Sato, S. Gisinger, M. Ern, M. Geldenhuys, P. Preusse, P. Šácha
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Abstract

Internal gravity waves (GWs) are ubiquitous in the atmosphere, making significant contributions to the mesoscale motions. Since the majority of their spectrum is unresolved in global circulation models, their effects need to be parameterized. In recent decades GWs have been increasingly studied in high-resolution simulations, which, unlike direct observations, allow us to explore full spatio-temporal variations of the resolved wave field. In our study we analyze and refine a traditional method for GW analysis in a high-resolution simulation on a regional domain around the Drake Passage. We show that GW momentum drag estimates based on the Gaussian high-pass filter method applied to separate GW perturbations from the background are sensitive to the choice of a cutoff parameter. The impact of the cutoff parameter is higher for horizontal fluxes of horizontal momentum, which indicates higher sensitivity for horizontally propagating waves. Two modified methods, which choose the parameter value from spectral information, are proposed. The dynamically determined cutoff is mostly higher than the traditional cutoff values around 500 km, leading to larger GW fluxes and drag, and varies with time and altitude. The differences between the traditional and the modified methods are especially pronounced during events with significant drag contributions from horizontal momentum fluxes.
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山波阻力估计对分离方法的敏感性及改进建议
内部重力波(GWs)在大气中普遍存在,对中尺度运动做出了重要贡献。由于它们的大部分光谱在全球环流模型中尚未解决,因此需要对它们的影响进行参数化。近几十年来,GWs在高分辨率模拟中得到了越来越多的研究,与直接观测不同,这使我们能够探索解析波场的完整时空变化。在我们的研究中,我们分析并改进了德雷克海峡周围区域域高分辨率模拟中GW分析的传统方法。我们表明,基于高斯高通滤波器方法的GW动量阻力估计用于将GW扰动与背景分离,对截止参数的选择是敏感的。截止参数对水平动量水平通量的影响更大,这表明对水平传播波的敏感性更高。提出了两种从光谱信息中选择参数值的改进方法。动态确定的截止值大多高于500公里左右的传统截止值,导致更大的GW通量和阻力,并随时间和海拔高度变化。传统方法和改进方法之间的差异在水平动量通量产生显著阻力的事件中尤为明显。
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来源期刊
Journal of the Atmospheric Sciences
Journal of the Atmospheric Sciences 地学-气象与大气科学
CiteScore
0.20
自引率
22.60%
发文量
196
审稿时长
3-6 weeks
期刊介绍: The Journal of the Atmospheric Sciences (JAS) publishes basic research related to the physics, dynamics, and chemistry of the atmosphere of Earth and other planets, with emphasis on the quantitative and deductive aspects of the subject. The links provide detailed information for readers, authors, reviewers, and those who wish to submit a manuscript for consideration.
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