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首页> 外文期刊>Journal of the Meteorological Society of Japan >Sensitivity of Numerical Simulations of Hurricane Joaquin (2015) to Cumulus Parameterization Schemes: Implications for Processes Controlling a Hairpin Turn in the Track
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Sensitivity of Numerical Simulations of Hurricane Joaquin (2015) to Cumulus Parameterization Schemes: Implications for Processes Controlling a Hairpin Turn in the Track

机译:飓风Joaquin(2015)对数值模拟对积云参数化方案的敏感性:控制曲目中发夹的过程的影响

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摘要

Hurricane Joaquin, a notable hurricane that occurred over the Atlantic Ocean in 2015, is studied with an emphasis on its unique hairpin turn that occurred between 2100 UTC 1 October and 0600 UTC 2 October 2015. A series of mesoscale high-resolution numerical simulations are performed with an advanced research version of the Weather Research and Forecasting (WRF) model. The sensitivity of numerical simulations to different cumulus, boundary layer, and microphysical parameterization schemes is examined to investigate the most relevant processes influencing the track evolution of Hurricane Joaquin. It was found that the numerical simulation of Hurricane Joaquin's track is highly sensitive to the choice of cumulus scheme. Large-scale environmental conditions and hurricane inner-core structures are diagnosed. The results indicated that middleto upper-level steering flows are crucial in influencing Joaquin's track. Further investigation of the large-scale environment (middleand upper-level trough, blocking high, thermal distribution, etc.) shows that middle-level blocking high plays an important role in Joaquin's movement. The structure of the hurricane core region, including the vertical extent of diabatic heating, vertical velocity, and relative humidity, could also play an important role. Specifically, the asymmetry and local absolute vorticity tendency over the inner-core region and its vicinity have a strong implication for Joaquin's hairpin turn.
机译:飓风Joaquin是2015年大西洋发生的一个值得注意的飓风,重点是其独特的发夹转弯,即2015年10月2日的2100 utc 1〜0600 UTC。一系列Mesoscale高分辨率数值模拟通过天气研究和预测(WRF)模型的高级研究版本。研究了数值模拟对不同积云层,边界层和微专业参数化方案的敏感性,以研究影响飓风Juaquin的轨道演变的最相关过程。结果发现,飓风Jaaquin轨道的数值模拟对积云方案的选择非常敏感。诊断大规模的环境条件和飓风内核结构。结果表明,Middleto上层转向流在影响Juaquin的轨道方面至关重要。进一步调查大规模环境(Middleand上层槽,阻挡高,热分布等)表明中层阻断高在Juaquin运动中起着重要作用。飓风核心区域的结构,包括垂直型糖尿病加热,垂直速度和相对湿度的垂直程度,也可以起到重要作用。具体而言,内核区域及其附近的不对称和局部绝对涡度倾向对Joaquin的发夹转弯具有很大的含义。

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