首页> 外文期刊>Annales Geophysicae >High-resolution Beijing mesosphere-stratosphere-troposphere (MST) radar detection of tropopause structure and variability over Xianghe (39.75° N, 116.96° E), China
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High-resolution Beijing mesosphere-stratosphere-troposphere (MST) radar detection of tropopause structure and variability over Xianghe (39.75° N, 116.96° E), China

机译:高分辨率的北京中层-平流层-对流层(MST)雷达探测香河(39.75°N,116.96°E)上对流层顶的结构和变化

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摘要

As a result of partial specular reflection from the atmospheric stable layer, the radar tropopause (RT) can simply and directly be detected by VHF radars with vertical incidence. Here, the Beijing mesosphere-stratosphere-troposphere (MST) radar measurements are used to investigate the structure and the variabilities in the tropopause in Xianghe, China, with a temporal resolution of 0.5 h from November 2011 to May 2017. The high-resolution radar-derived tropopause is compared with the thermal lapserate tropopause (LRT) that is defined by the World Meteorological Organization (WMO) criterion from twice-daily radiosonde soundings and with the dynamical potential vorticity tropopause (PVT) that is defined as the height of the 2PVU (PVU - potential vorticity units; 1 PVU = 10(6) m(2) s(-1) K kg(-1)) surface. We only consider tropopauses below 16 km in this study because of limitations with the radar system. During all the seasons, the RT and the LRT in altitude agree well with each other, with a correlation coefficient of >= 0.74. Statistically, weaker (higher) tropopause sharpness seems to contribute to larger (smaller) difference between the RT and the LRT in altitude. The RT agrees well with the PVT in altitude during winter and spring, with a correlation coefficient of >= 0.72, while the correlation coefficient in summer is only 0.33. As expected, the monthly mean RT and LRT height both show seasonal variations. Lomb-Scargle periodograms show that the tropopause exhibits obvious diurnal variation throughout the seasons, whereas the semidiurnal oscillations are rare and are occasionally observed during summer and later spring. Our study shows the potential of the Beijing MST radar to determine the tropopause height as well as present its diurnal oscillations.
机译:由于来自大气稳定层的部分镜面反射,雷达对流层顶(RT)可以由垂直入射的VHF雷达简单直接地检测到。在这里,使用北京中层-平流层-对流层(MST)雷达测量来研究中国香河对流层顶的结构和变化,其时间分辨率为2011年11月至2017年5月。高分辨率雷达将派生的对流层顶与世界气象组织(WMO)的标准(由每天两次探空仪探测)定义的热衰减对流层顶(LRT)以及动态势涡度对流层顶(PVT)(定义为2PVU的高度)进行比较(PVU-潜在涡度单位; 1 PVU = 10(6)m(2)s(-1)K kg(-1))表面。由于雷达系统的局限性,在本研究中我们仅考虑对流层顶不足16 km。在所有季节中,RT和LRT在高度上的一致性都很好,相关系数> = 0.74。从统计学上讲,对流层顶锐度的减弱(较高)清晰度似乎会导致RT和LRT在海拔高度上的差异较大(较小)。在冬季和春季,RT与PVT在海拔高度上非常吻合,相关系数> = 0.72,而夏季的相关系数仅为0.33。不出所料,月平均RT和LRT高度均显示出季节性变化。 Lomb-Scargle周期图显示,对流层顶在整个季节都表现出明显的昼夜变化,而半日振荡很少见,并且在夏季和春季晚些时候偶尔会观察到。我们的研究表明,北京MST雷达具有确定对流层顶高度以及显示其昼夜振荡的潜力。

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  • 来源
    《Annales Geophysicae》 |2019年第4期|631-643|共13页
  • 作者单位

    Wuhan Univ Sch Elect Informat Wuhan 430072 Hubei Peoples R China|Nanchang Hangkong Univ Sch Informat Engn Nanchang 330063 Jiangxi Peoples R China;

    Wuhan Univ Sch Elect Informat Wuhan 430072 Hubei Peoples R China;

    Chinese Acad Sci Inst Atmospher Phys Key Lab Middle Atmosphere & Global Environm Obser Beijing 100029 Peoples R China;

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