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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Seasonal variations of the semi-diurnal and diurnal tides in the MLT: multi-year MF radar observations from 2 to 70 deg N, and the GSWM tidal model
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Seasonal variations of the semi-diurnal and diurnal tides in the MLT: multi-year MF radar observations from 2 to 70 deg N, and the GSWM tidal model

机译:MLT中半日潮和日潮的季节性变化:从2到70度N的多年MF雷达观测和GSWM潮汐模型

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摘要

Continuous observations of the wind field have been made by six Medium Frequency Radars (MFRs), located between the equator and high northern latitudes: Christmas Islands (2 deg N), Hawaii (22 deg N), Urbana (40 deg N), London (43 deg N), Saskatoon (52 deg N) and Tromso (70 deg N). Data have been sought for the time interval 1990-1997, and typically 5 years of data have become available from each station, to demonstrate the level of annual consistency and variability. Common harmonic analysis is applied so that the monthly amplitudes and phases of the semi-diurnal (SD) and diurnal (D) wind oscillations are available in the height range of (typically) 75-95 km in the upper Middle Atmosphere. Comparisons are made with tides from the Global Scale Wave Model (GSWM), which are available for 3-month seasons. The emphasis is upon the monthly climatologies at each location based upon comparisons of profiles, and also latitudinal plots of amplitudes and phases at particular heights. For the diurnal tide, the agreement between observations and model is now quite excellent with modelled values frequently lying within the range of yearly values. Both observations and model demonstrate strong seasonal changes. This result is a striking improvement over the comparisons of 1989 (JATP, Special issue). In particular, the phases and phase-gradients for the non-winter months at mid- to high-latitudes are now in excellent agreement. Some of the low latitude discrepancies are attributed to the existence of non-migrating tidal components associated with tropospheric latent heat release. For the semi-diurnal tide, the observed strong transitions between clear solstitial states are less well captured by the model. There is little evidence for improvement over the promising comparisons of 1989. In particular, the late-summer/autumnal tidal maximum of mid-latitudes is observed to be larger, and with strong monthly variability. Also the summer modelled tide has unobserved short (20 km) wavelengths at high latitudes,
机译:位于赤道和北部高纬度之间的六个中频雷达(MFR)进行了连续的风场观测:圣诞节岛(北纬2度),夏威夷(北纬22度),厄巴纳(北纬40度),伦敦(北纬43度),萨斯卡通(北纬52度)和特罗姆瑟(北纬70度)。一直在寻找1990年至1997年时间间隔的数据,通常每个站都可获得5年的数据,以证明年度一致性和可变性的水平。应用普通谐波分析,以便在中高层大气的(通常)75-95 km的高度范围内可获得半日(SD)和日(D)风振荡的每月振幅和相位。比较了全球尺度波浪模型(GSWM)的潮汐,这些潮汐可用于3个月的季节。重点是根据轮廓的比较以及每个位置在特定高度的振幅和相位的纬度图,比较每个位置的每月气候。对于日潮,观测值与模型之间的一致性现在非常好,建模值通常位于年度值的范围内。观测值和模型均显示出强烈的季节性变化。与1989年的比较(JATP,特刊)相比,该结果是惊人的改进。尤其是现在,中纬度和高纬度的非冬季月份的相位和相位梯度非常吻合。一些低纬度差异归因于与对流层潜热释放相关的非迁移潮汐分量的存在。对于半日潮,模型无法很好地观测到清晰的孤立状态之间的强烈过渡。几乎没有什么证据可以比1989年的前景更好。特别是,中纬度的夏末/秋季潮汐最大值较大,并且每月变化很大。同样,夏季模拟的潮汐在高纬度地区也没有观测到短波(20公里),

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