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首页> 外文期刊>Annales Geophysicae >Development of radio acoustic sounding system (RASS) with Gadanki MST radar - first results
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Development of radio acoustic sounding system (RASS) with Gadanki MST radar - first results

机译:用Gadanki MST雷达开发无线电测深系统(RASS)-初步成果

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A high-power acoustic exciter was designed and developed for the Gadanki MST Radar to facilitate observations in the Radio Acoustic Sounding System (RASS) mode. Sweep range of acoustic signal frequencies was set to 94-125 Hz so as to satisfy Bragg matching condition for temperature range of -90°-40℃ between surface and the tropopause (about 17 km). Raytracing of acoustic wave propagation was used to predict the antenna beam directions along which optimum RASS echoes could be obtained. During the RASS observation period of about 18 h on 23-24 July 2006 height profiles of atmospheric virtual temperature were obtained between 1.5 km and 10 km and occasionally up to 14 km. In comparison with the three simultaneous radiosonde launches, RASS derived temperature profiles had the r.m.s. discrepancy of about 1 K, although deviation of the RASS results sometimes appeared when the radial wind velocity was not fully available for the correction of apparent sound speed. This study has successfully demonstrated capability of the RASS application with the Gadanki MST radar, which will be used for continuous monitoring of the temperature profiles in the troposphere and lower stratosphere region in the tropics.
机译:为Gadanki MST雷达设计和开发了一种高功率声激励器,以方便在无线电声测深系统(RASS)模式下进行观察。声波信号的扫频范围设置为94-125 Hz,以满足表面和对流层顶之间(-约17 km)-90°-40℃温度范围的布拉格匹配条件。声波传播的射线追踪用于预测天线波束方向,沿着该方向可获得最佳RASS回波。在2006年7月23日至24日进行的RASS观测期约18 h期间,获得了1.5 km至10 km之间(偶尔可达14 km)的大气虚拟温度高度剖面。与同时进行的三个探空仪发射相比,RASS得出的温度剖面的有效值是r.m.s.大约有1 K的差异,尽管当径向风速不能完全用于表观声速的校正时,有时会出现RASS结果的偏差。这项研究成功地证明了Gadanki MST雷达在RASS应用中的能力,该雷达将用于连续监测热带对流层和低平流层区域的温度分布。

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