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A Numerical Study of Sea-Fog Formation over Cold Sea Surface Using a One-Dimensional Turbulence Model Coupled with the Weather Research and Forecasting Model

机译:一维湍流模型结合天气研究与预报模型对冷海表面海雾形成的数值研究

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The formation mechanism of a cold sea-fog case observed over the Yellow Sea near the western coastal area of the Korean Peninsula is investigated using numerical simulation with a one-dimensional turbulence model coupled with a three-dimensional regional model. The simulation was carried out using both Eulerian and Lagrangian approaches; both approaches produced sea fog in a manner consistent with observation. For the selected cold sea-fog case, the model results suggested the following: as warm and moist air flows over a cold sea surface, the lower part of the air column is modified by the turbulent exchange of heat and moisture and the diurnal variation in radiation. The modified boundary-layer structure represents a typical stable thermally internal boundary layer. Within the stable thermally internal boundary layer, the air temperature is decreased by radiative cooling and turbulent heat exchange but the moisture loss due to the downward vapour flux in the lowest part of the air column is compensated by moisture advection and therefore the dewpoint temperature does not decrease as rapidly as does the air temperature. Eventually water vapour saturation is achieved and the cold sea fog forms in the thermal internal boundary layer.
机译:利用一维湍流模型与三维区域模型相结合的数值模拟,研究了朝鲜半岛西部沿海地区附近黄海上空观察到的冷海雾事件的形成机理。使用欧拉方法和拉格朗日方法进行了仿真。两种方法均以与观察一致的方式产生海雾。对于选定的冷海雾情况,模型结果建议如下:当温暖潮湿的空气流过冷海表面时,气柱的下部会因热量和水分的湍流交换以及大气中的日变化而改变。辐射。改进的边界层结构代表了典型的稳定的热内部边界层。在稳定的内部热边界层内,空气温度通过辐射冷却和湍流热交换而降低,但由于空气塔最低部分中的向下蒸汽通量而导致的水分损失通过水分对流得到补偿,因此露点温度不会下降速度与气温一样快。最终达到水蒸气饱和,并且在热内部边界层中形成冷海雾。

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