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Modelling sensible and latent heat fluxes over sea during unstable, very close to neutral conditions

机译:模拟不稳定情况下非常接近中性条件下海上的感热通量和潜热通量

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During slightly unstable but still very close to neutral conditions new results from two previous investigations have shown a significant increase of sensible and latent heat fluxes over the sea. The vertical heat transport during these conditions is dominated by detached eddies originating at the top of the boundary layer, bringing relatively cold and dry air to the surface. This effect can be described in numerical models by either enhanced heat transfer coefficients for sensible and latent heat (Stanton and Dalton numbers respectively) or with an additional roughness length, added to the original roughness lengths for heat and humidity. Such new expressions are developed using turbulence measurements from the Baltic Sea valid for wind speeds up to 14 m su-1. The effect of including the increased heat fluxes is investigated using two different numerical models: a regional three-dimensional climate model covering northern Europe, and a process-oriented ocean model for the Baltic Sea. During periods of several days, the latent heat flux can be increased by as much as 100 W mu-2. The increase in sensible heat flux is significantly smaller since the process is only of importance in the very near-neutral regime where the sensible heat flux is very small. The long-term average effect over the Baltic Sea is of the order of several W mu-2.
机译:在稍微不稳定但仍非常接近中性条件的情况下,先前两次研究的新结果表明,海上的感热通量和潜热通量显着增加。在这些条件下的垂直传热主要由边界层顶部的分离涡流控制,从而将相对较冷和干燥的空气引入表面。可以在数值模型中通过提高显热和潜热的传热系数(分别为Stanton和Dalton数)或在热和湿度的原始粗糙度长度上添加附加的粗糙度长度来描述这种影响。使用波罗的海的湍流测量结果开发了这样的新表达式,其有效风速高达14 m su-1。使用两种不同的数值模型研究了包括增加的热通量的影响:覆盖北欧的区域三维气候模型和波罗的海面向过程的海洋模型。在几天的时间内,潜热通量最多可以增加100 W mu-2。显热通量的增加明显较小,因为该过程仅在显热通量非常小的非常接近中性的状态下才很重要。在波罗的海的长期平均影响约为几个W mu-2。

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