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首页> 外文期刊>TAO: Terrastrial, atmospheric, and oceanic sciences >High-resolution numerical model for predicting the transport and dispersal of oil spilled in the black sea
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High-resolution numerical model for predicting the transport and dispersal of oil spilled in the black sea

机译:高分辨率数值模型,用于预测黑海漏油的运输和扩散

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摘要

The coupled DieCAST-SSBOM (Shirshov-Stony Brook Oil spill transport Model) circulation-oil spill transport model is used to predict the transport and dispersal of contaminants resulting from representative hypothetical oil spills in the Black Sea. With climatological forcing, the DieCAST model realistically simulates many of the dominant mesoscale features of seasonally-varying large scale circulation and meso-scale features of the circulation including the Rim Current, anticyclonic coastal eddies, headland eddy shedding and vertical stratification. The oil spill model ingests DieCAST surface currents and employs a Lagrangian tracking algorithm to predict the motion of a large number of seeded particles, the sum of which (~1 million) form the oil plume. Basic processes affecting the transport of oil and its fate (advection, sinking, evaporation, etc.) are included as parameters. Various scenarios of hypothetical blowouts of oil in different regions of the sea are simulated and discussed as to their structure, transport and likelihood of coastal contamination. The ultimate objective is to develop an operational oil slick model forced with synoptic winds and air-sea interaction.
机译:耦合的DieCAST-SSBOM(Shirshov-Stony Brook溢油运输模型)循环-溢油运输模型用于预测由黑海中代表性的假设性溢油导致的污染物的运输和扩散。利用气候强迫,DieCAST模型可以逼真的模拟季节性变化的大型环流和环流的中尺度特征的许多主要中尺度特征,包括环流,反气旋沿海涡,岬角涡流脱落和垂直分层。漏油模型吸收DieCAST表面电流,并采用拉格朗日跟踪算法来预测大量种子颗粒的运动,这些颗粒之和(约100万)构成了油羽。作为参数,包括影响石油及其命运(对流,下沉,蒸发等)的运输的基本过程。模拟并假设了海洋不同区域的石油井喷的各种情景,并讨论了其结构,运输和沿海污染的可能性。最终目标是开发一种在刮风和海-气相互作用下强制运行的浮油模型。

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