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Water vapor measurements by mobile Raman lidar over the Mediterranean Sea in the framework of HyMeX: application to multi-platform validation of moisture profiles

机译:Mobile Raman Lidar在Hymex框架中移动拉曼·丽达的水蒸气测量:应用于水分型材的多平台验证

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The Water Aerosol Lidar (WALI) system, deployed for 14 weeks during 2012 & 2013 on the island of Menorca, provided the Hydrological cycle in the Mediterranean eXperiment (HyMeX) with an opportunity to perform a multi-platform comparison on moisture retrievals at the timescales relevant for extreme precipitation events in the West Mediterranean basin. After calibration, the WALI lidar yields nighttime profiles of water vapor with -7% accuracy from the ground up to 7 km, and daytime coverage of the lower layers, alongside common aerosol retrievals. It is used to characterize the water vapor profile product given by the IASI instrument on-board MetOp-B, and the fields simulated by the Météo-France AROME-WMED model and the open-source WRF model. IASI is found to be reliable above 1 km altitude, and the two models obtain similar high scores in the middle troposphere; WRF beneficiates from a more accurate modelling of the planetary boundary layer.
机译:在2012年2012年梅诺卡岛上部署了14周的水气溶胶LIDAR(WALI)系统,提供了地中海实验(Hymex)的水文循环,其中有机会对时间尺度进行水分检索进行多平台比较与西地中海盆地的极端降水事件相关。校准后,WALI LIDAR在距离地面上有-7%的水蒸气的夜间剖面,最高可达7km,以及较低层的白天覆盖,以及共同的气溶胶检索。它用于表征由IASI仪器型号MEDOP-B给出的水蒸气型材产品,以及由Météo-France Arome-WMMED模型和开源WRF模型模拟的领域。 IASI被发现可靠高于1公里的高度,两种模型在对流层中获得了类似的高分; WRF受益于行星边界层的更准确的建模。

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