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Numerical Simulation of Deep-Water Convection in the Gulf of Lion

机译:狮子湾深水对流的数值模拟

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The unsteady-state process of deep-water convection in the Gulf of Lion has been observed and investigated in recent decades. However, the mechanisms of the uncertainty and irregularity of the deep-water convection in this region have not yet been fully understood. In this study, the effects of time variation of the surface buoyancy flux on the formation of the deep-water convection are examined. Numerical simulations using the Coupled Ocean/Atmosphere Mesoscale Prediction System (COAMPS®) with the NRL Coastal Ocean Model (NCOM) as an oceanic component were conducted for the period from October 1998 to September 2000 to cover two winters, 1998–1999 and 1999–2000, over the Gulf of Lion region. The results show large differences in the deep-water convection between the two winters, even though the total surface heat fluxes during the two winter seasons are similar. The differences are related to the time variation of the surface buoyancy flux that causes large differences in the preconditioning and mixing stages of the convection.
机译:近几十年来,已经观察到并研究了狮子湾深水对流的非稳态过程。但是,该区域深水对流的不确定性和不规则性的机理尚未完全被理解。在这项研究中,研究了表面浮力通量的时间变化对深水对流形成的影响。 1998年10月至2000年9月,使用NRL沿海海洋模型(NCOM)作为海洋成分,进行了海洋/大气中尺度耦合预报系统(COAMPS®)的数值模拟,涵盖了1998- 1999年和1999–2000年,在狮子湾地区上空。结果表明,尽管两个冬季的总表面热通量相似,但两个冬季之间的深水对流差异很大。差异与表面浮力通量的时间变化有关,这会导致对流的预处理和混合阶段产生较大差异。

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