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Black Sea Forecasting System: Current State and Prospect

机译:黑海预报系统:现状与展望

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摘要

An operational system permitting nowcasting and forecasting of the real-time Black Sea circulation and surface wave dynamics is presented. The system is based on the regional atmospheric model with 24 km grid step, primitive equation model of the Black Sea circulation with 5 km grid step, WAM model of the surface waves coupled with circulation model with the same spatial resolution, and the set of local circulation models with resolution 1 km nested near the coast of riparian countries. An important part of the operational system is assimilation of space remote sensing data including sea surface height anomalies provided in near real time mode, a multi-satellite data active archive dedicated to space oceanography, and surface temperature. The output of the system includes near surface meteorology (10 m wind, latent and sensible heat flux, cumulated solar and thermal radiation flux, instantaneous flux of solar and thermal radiation, evaporation, large scale and convective precipitation), three dimensional hydrophysical fields (temperature, salinity, current velocities), surface chlorophyll concentration, and surface wave characteristics. Data from surface drifting buoys and deep profiling floats are used for validation of the model output. Surface drifting buoys provide data for validation of surface current velocity and sea surface temperature. Eight profiling floats deployed at the parking depths 200, 750 and 1,550 m are used for validation of weekly mean velocity, temperature and salinity profiles. The model validation shows that the real time products of the system have reasonable accuracy. The regional weather prediction model implemented by National Meteorological Administration of Romania and marine basin-scale nowcasing/ forecasting system provides good basis for the development of operational nowcast and forecast of coastal dynamics with high spatial resolution. Ongoing national initiatives concerning oceanographic modeling of the most important regions along the Black Sea coast are considered as the base of the nesting strategy development in the basin. Regional POM models near Bulgarian, Turkish, Georgian, Romanian, Russian and Ukrainian coasts are nested to the basin-scale circulation model of MHI. Every model specifies open boundary conditions from the basin-scale circulation model. The Black Sea observing/forecasting system is applied for the hindcast of the long-term evolution of the Sea fields. Evidence of the decadal evolution of the stratification and circulation is presented by the system output. Two more examples demonstrate the extreme events in the coastal regions of the Black Sea: intense upwelling near the Crimea coast and severe storm event.
机译:提出了一个可实时预报和预测黑海环流和地表波动力学的操作系统。该系统基于具有24 km网格步长的区域大气模型,具有5 km网格步长的黑海环流的原始方程模型,表面波的WAM模型以及具有相同空间分辨率的环流模型以及局部在河岸国家海岸附近筑巢的分辨率为1 km的环流模型。操作系统的重要组成部分是对空间遥感数据的同化,包括近实时模式下提供的海面高度异常,致力于空间海洋学的多卫星数据活动档案库和地表温度。该系统的输出包括近地表气象(10 m风,潜热和显热通量,累积的太阳和热辐射通量,太阳和热辐射的瞬时通量,蒸发,大尺度和对流降水),三维水文场(温度) ,盐度,流速),表面叶绿素浓度和表面波特征。来自表面浮标浮标和深轮廓浮标的数据用于验证模型输出。水面浮标为验证水面流速和海面温度提供数据。在停车深度200、750和1,550 m处部署了八个轮廓浮标,用于验证每周平均速度,温度和盐度剖面。模型验证表明,该系统的实时产品具有合理的准确性。罗马尼亚国家气象局实施的区域天气预报模型和海盆规模的换装/预报系统为开展业务化的临近预报和具有高空间分辨率的海岸动态预报提供了良好的基础。正在进行的有关黑海沿岸最重要地区海洋学建模的国家倡议被视为该盆地筑巢战略的基础。保加利亚,土耳其,格鲁吉亚,罗马尼亚,俄罗斯和乌克兰海岸附近的区域POM模型嵌套在MHI的盆地规模环流模型中。每个模型都根据流域规模的环流模型指定开放边界条件。黑海观测/预报系统用于海域长期演变的后预报。系统输出显示分层和循环的年代际演变的证据。另外两个例子说明了黑海沿海地区的极端事件:克里米亚海岸附近的强烈上升流和严重风暴事件。

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