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Evaluation of potential impacts of future Japan's space-based Doppler Wind Lidar (DWL) on polar- and tropical-orbiting satellites

机译:评估日本未来的天基多普勒风激光雷达(DWL)对极地和热带轨道卫星的潜在影响

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The feasibility of coherent Doppler wind lidars (DWLs) has been investigated based on a sensitivity observation system simulation experiment (OSSE). The pseudo-truth atmospheric field is generated from the Sensitivity Observing System Experiment (SOSE) approach. Hourly aerosols are produced to simulate DWL by a global aerosol chemical transport model in which wind field is nudged with pseudotruth. Simulated measurement of horizontal line-of-sight wind speeds is assimilated by using the four-dimensional variational (4D-Var) scheme of the operational global data assimilation system at Japan Meteorological Agency. We evaluated potential impacts of DWLs onboard polar and low-inclination orbiting satellites in January and August in 2010. We found positive impacts of DWLs on either satellites and greater impacts in the January experiment. The results also showed seasonal dependency of impacts and importance of quality control and observation error setting.
机译:基于灵敏度观测系统仿真实验(OSSE),研究了相干多普勒测风激光雷达(DWL)的可行性。伪真实的大气场是通过灵敏度观测系统实验(SOSE)方法生成的。每小时产生的气溶胶通过全球气溶胶化学传输模型来模拟DWL,在该模型中,用假真相微调了风场。通过使用日本气象厅的全球运行数据同化系统的四维变分(4D-Var)方案,可以对水平视线风速的模拟测量进行同化。我们在2010年1月和8月评估了DWL在极地和低倾角轨道卫星上的潜在影响。我们发现DWL对这两个卫星都有积极影响,并且在一月份的实验中发现了更大的影响。结果还显示了影响的季节性依赖性以及质量控制和观察误差设置的重要性。

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