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The signature of mid-latitude convection observed by VHF wind-profiling radar

机译:甚高频风廓线雷达观测到的中纬度对流信号

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[1] The signature of mid-latitude convection observed by a 46.5 MHz wind-profiling radar at Aberystwyth, UK (52.4 degreesN, 4.0 degreesW), is demonstrated by way of a case study. A key feature of such radars is their ability to measure the vertical air velocity directly, even under conditions of precipitation. Higher frequency radars, which have more typically been used for such studies, measure the net effect of hydrometeor terminal velocities and the air motion under such conditions. The radar is capable of observing both updrafts and downdrafts, with peak updrafts of the order of 10 m s(-1). The signature of convection additionally consists of enhanced values of the radar return spectral width, which cannot be interpreted in terms of turbulence intensity, and reduced reliability of the corresponding radar-derived horizontal wind components. When convection reaches the uppermost troposphere, the radar return signal power can be anomalously large leading to the radar-derived tropopause altitude being overestimated. The presence of convection is confirmed by thermal infrared satellite imagery of high-topped clouds. Use is also made of radiosonde and UHF wind-profiler data.
机译:[1]通过案例研究证明了在英国阿伯里斯特威斯(52.4华氏度,4.0华氏度)的46.5 MHz风廓线雷达观测到的中纬度对流信号。这种雷达的主要特征是即使在降水条件下,它们也能够直接测量垂直空气速度。更高频率的雷达(通常用于此类研究)在这种条件下测量水汽凝结终端速度和空气运动的净效应。雷达能够同时观测上升气流和下降气流,峰值上升气流约为10 m s(-1)。对流特征还包括无法通过湍流强度来解释的雷达回波谱宽度的增强值,以及相应的雷达衍生的水平风分量的可靠​​性降低。当对流到达最高对流层时,雷达返回信号功率会异常大,从而导致高估了源自雷达的对流层顶高度。对流的存在通过高顶云的红外热卫星图像确认。还使用无线电探空仪和UHF风廓线仪数据。

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