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首页> 外文期刊>Journal of Advances in Modeling Earth Systems >Convective Boundary Layer Control of the Sea Surface Temperature in the Tropics
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Convective Boundary Layer Control of the Sea Surface Temperature in the Tropics

机译:热带海面温度的对流边界层控制

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摘要

Using successive versions of a global climate model, we show how convective transport to the free troposphere of the humidity evaporated at the surface or, reciprocally, entrainment of dry air from the free troposphere into the mixed layer, controls surface evaporative cooling and then sea surface temperature. This control is as important as the radiative effect of boundary layer clouds on radiation. Those aspects are shown to be improved when activating a mass flux representation of the organized structures of the convective boundary layer coupled to eddy diffusion, the so‐called “thermal plume model,” leading to an increased near‐surface drying compared to the use of turbulent diffusion alone. Controlling detrainment by air properties from just above the boundary layer allows the thermal plume model to be valid for both cumulus and stratocumulus regimes, improving the contrast in near‐surface humidity between the trade winds region and East Tropical oceans. Using pairs of stand‐alone atmospheric simulations forced by sea surface temperature and of coupled atmosphere‐ocean simulations, we show how the improvement of the surface fluxes that arise from this improved physics projects into an improvement of the representation of sea surface temperature patterns in the coupled model, and in particular into a reduction of the East Tropical Ocean warm bias. The work presented here led to the bias reduction in sea surface temperature in the Institute Pierre Simon Laplace coupled model, IPSL‐CM6A, developed recently for the 6th phase of the Coupled Model Intercomparison Project, CMIP6. Plain Language Summary Global numerical models used to anticipate the future of our climate under global warming still suffer from significant errors, some of which are shared among all models. Among those shared errors is the tendency to predict too warm sea surface temperature over the east part of the tropical ocean in the tropics. We show how a better representation of the vertical convective transport in the first km above sea surface improves the representation of transport of dry air from the free troposphere. The drying of the near surface increases evaporation at the surface, that in turn contributes to significantly cool the sea surface in those regions.
机译:采用连续版本的全球气候模型,我们展示了对表面的湿度的自由对流层的对流传输,或者,相互侵入的干燥空气从自由的对流层进入混合层,控制表面蒸发冷却,然后对海面进行控制。温度。这种控制与边界层云对辐射的辐射效果一样重要。当激活与涡流扩散的对流边界层的有组织结构的质量磁通表示时,将改善这些方面,所谓的“热羽模型”,导致与使用相比增加了近表面干燥增加单独湍流扩散。从边界层的空气性能控制碎屑允许热羽模型对跨度和划分的划线和划分型划线和划分的磨碎模型有效,从而改善贸易风区域和东热带海洋之间的近表面湿度的对比。使用海面温度和耦合大气模拟的双层大气模拟,我们展示了如何改善从这种改进的物理学中产生的表面磁通量的改进,从而改善了海面温度模式的表示耦合模型,尤其达到了东热带海洋温暖偏差的减少。此处介绍的工作导致研究所皮埃尔Simon Laplace耦合模型的海面温度偏差,IPSL-CM6A最近开发了耦合型号互通项目的第6个阶段CMIP6。普通语言摘要全球数值模型用于预测我们在全球变暖下的气候未来仍然存在重大错误,其中一些在所有型号中共享。在那些共享错误中,在热带海洋的东部预测到热带海洋的东部太热海面温度的趋势。我们展示了海面上第一个千克的垂直对流运输的更好代表性如何改善来自自由对流层的干燥空气运输的代表。近表面的干燥增加了表面的蒸发,反过来有助于在这些区域中显着冷却海面。

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