首页> 外文会议>Remote Sensing and Modeling of the Atmosphere, Oceans, and Interactions; Proceedings of SPIE-The International Society for Optical Engineering; vol.6404 >Impact of assimilation of INSAT Cloud Motion Vector (CMV) wind for the prediction of a monsoon depression over Indian Ocean using a mesoscale model
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Impact of assimilation of INSAT Cloud Motion Vector (CMV) wind for the prediction of a monsoon depression over Indian Ocean using a mesoscale model

机译:中尺度模型对INSAT云运动矢量(CMV)风同化对印度洋季风低压预报的影响

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The present study utilized the Penn State/NCAR mesoscale model (MM5), to assimilate the INSAT-CMV (Indian National Satellite System-Cloud Motion Vector) wind observations using analysis nudging to improve the prediction of a monsoon depression which occurred over the Arabian Sea, India during 14 September 2005 to 17 September 2005. NCEP-FNL analysis has been utilized as the initial and lateral boundary conditions and two sets of numerical experiments were designed to reveal the impact of assimilation of satellite-derived winds. The model was integrated from 14 September 2005 00 UTC to 17 September 2005 00 UTC, with just the NCEP FNL analysis in the NOFDDA run. In the FDDA run, the NCEP FNL analysis fields were improved by assimilating the INSAT-CMV (wind speed and wind direction) as well as QuickSCAT sea surface winds during the 24 hour pre-forecast period (14 September 2005 00 UTC to 15 September 2005 00 UTC) using analysis nudging. The model was subsequently run in the free forecast mode from 15 September 2005 00 UTC to 17 September 2005 12 UTC. The simulated sea level pressure field from the NOFDDA run reveals a relatively stronger system as compared to the FDDA run. However, the sea level pressure fields corresponding to the FDDA run are closer to the analysis. The simulated lower tropospheric winds from both experiments reveal a well-developed cyclonic circulation as compared to the analysis.
机译:本研究利用宾州(Penn State)/ NCAR中尺度模型(MM5),利用分析微调来吸收INSAT-CMV(印度国家卫星系统-云运动矢量)风观测资料,以改进对阿拉伯海上空季风低压的预测印度洋2005年9月14日至2005年9月17日之间。NCEP-FNL分析已被用作初始边界条件和横向边界条件,并设计了两组数值实验来揭示同化卫星风的影响。该模型从2005年9月14日UTC到2005年9月17日00 UTC进行了集成,仅在NOFDDA运行中进行了NCEP FNL分析。在FDDA运行中,通过在预测的24小时内(2005年9月14日00 UTC至2005年9月15日)吸收了INSAT-CMV(风速和风向)以及QuickSCAT海面风,改善了NCEP FNL分析领域00 UTC)使用分析微调。随后,该模型在2005年9月15日UTC到2005年9月17日12 UTC的自由预测模式下运行。与FDDA运行相比,来自NOFDDA运行的模拟海平面压力场显示出一个相对更强大的系统。但是,与FDDA运行相对应的海平面压力场更接近分析。与分析相比,两个实验的对流层低层模拟风显示了发达的气旋环流。

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