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Ship observations and numerical simulation of the marine atmospheric boundary layer over the spring oceanic front in the northwestern South China Sea

机译:南海西北部春季海洋前缘海洋大气边界层的船舶观测与数值模拟

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摘要

The response of the marine atmospheric boundary layer (MABL) structure to an oceanic front is analyzed using Global Positioning System (GPS) sounding data obtained during a survey in the northwestern South China Sea (NSCS) over a period of about 1week in April 2013. The Weather Research and Forecasting (WRF) model is used to further examine the thermodynamical mechanisms of the MABL's response to the front. The WRF model successfully simulates the change in the MABL structure across the front, which agrees well with the observations. The spatially high-pass-filtered fields of sea surface temperature (SST) and 10m neutral equivalent wind from the WRF model simulation show a tight, positive coupling between the SST and surface winds near the front. Meanwhile, the SST front works as a damping zone to reduce the enhancement of wind blowing from the warm to the cold side of the front in the lower boundary layer. Analysis of the momentum budget shows that the most active and significant term affecting horizontal momentum over the frontal zone is the adjustment of the pressure gradient. It is found that the front in the NSCS is wide enough for slowly moving air parcels to be affected by the change in underlying SST. The different thermal structure upwind and downwind of the front causes a baroclinic adjustment of the perturbation pressure from the surface to the midlayer of the MABL, which dominates the change in the wind profile across the front.
机译:2013年4月,在南海西北部(NSCS)的一项调查中获得的全球定位系统(GPS)探测数据对海洋大气边界层(MABL)结构对海洋锋的响应进行了分析。天气研究和预报(WRF)模型用于进一步检查MABL响应锋面的热力学机制。 WRF模型成功地模拟了前部MABL结构的变化,这与观测结果非常吻合。从WRF模型模拟得到的海面温度(SST)和10m中性等效风的空间高通滤波场显示,SST与靠近前部的表面风之间存在紧密的正耦合。同时,SST锋面充当阻尼区,以减少下边界层中从锋面的热侧吹向冷侧的风的增强。对动量预算的分析表明,影响额叶上方水平动量的最活跃,最重要的条件是压力梯度的调整。发现NSCS的前部足够宽,以使缓慢移动的包裹受到基础SST变化的影响。前部迎风和顺风的不同热结构导致从地面到MABL中层的扰动压力的斜压调节,这主导了前部风廓线的变化。

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