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Time-height evolution of intraseasonal oscillations in the tropical lower atmosphere: Multilevel wind observations using UHF radar

机译:热带低层大气季节内振荡的时间高度演变:使用UHF雷达的多级风观测

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摘要

Signatures of the low frequency intraseasonal oscillations (ISO) and their time-height evolution in the lower atmosphere are studied using multilevel wind observations made at a tropical Indian site, Gadanki using UHF radar during the period from March 1999 to September 2000. Spectral analysis using Fast Fourier transform (FFT) and wavelet transform showed the presence of oscillations in zonal wind and revealed their evolution in height and time during the observational period. 10-25 day and 30-60 day oscillations are predominantly observed during pre-monsoon and southwest (SW) monsoon respectively. The amplitude of these oscillations are found to be weak in the lower altitudes and strengthened across the lower Atmospheric Boundary Layer (ABL) and this is quite prominent in the case of 30-60 day oscillations. All these oscillations strengthened at higher altitudes especially above mean ABL height >1 km. It is observed that intense 10-25 day oscillations present during pre monsoon become 30-60 day oscillations as monsoon intensifies. Spectral analysis carried out using NCEP wind for the same period also showed the existence of increasing time scale along SW monsoon season even though 10-25 day and 80-90 day oscillations are found to be relatively weak. Further use of NCEP zonal wind in 2001 and 2002 showed a remarkably different behaviour during the dry year of 2002 with an early development of low-frequency oscillations prior to the monsoon season.
机译:利用在1999年3月至2000年9月期间使用UHF雷达在印度加丹基热带热带地点进行的多级风观测,研究了低频季节内振荡(ISO)的特征及其在低层大气中的时间高度演变。快速傅立叶变换(FFT)和小波变换显示了纬向风中振荡的存在,并揭示了观测期间它们在高度和时间上的演变。分别在季风前和西南(SW)季风期间分别观测到10-25天和30-60天的振荡。发现这些振荡的振幅在较低的高度较弱,并在较低的大气边界层(ABL)上增强,这在30-60天的振荡情况下非常明显。所有这些振荡在更高的高度上都得到加强,尤其是在平均ABL高度> 1 km以上时。可以观察到,随着季风的加剧,季风爆发前10-25天的剧烈振荡变成30-60天的振荡。尽管发现10-25天和80-90天的振荡相对较弱,但使用NCEP风在同一时期进行的光谱分析也显示了西南季风季节时间尺度的增加。在2001年和2002年进一步使用NCEP纬向风显示,在2002年的干旱年,行为表现出显着不同,在季风季节之前低频振荡就已经提前发展了。

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