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首页> 外文期刊>Journal of the Atmospheric Sciences >A Study on the Asymmetric Rapid Intensification of Hurricane Earl (2010) Using the HWRF System
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A Study on the Asymmetric Rapid Intensification of Hurricane Earl (2010) Using the HWRF System

机译:使用HWRF系统研究飓风伯爵(2010)的不对称快速强化

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摘要

In this study, the results of a forecast from the operational Hurricane Weather Research and Forecast (HWRF) system for Hurricane Earl (2010) are verified against observations and analyzed to understand the asymmetric rapid intensification of a storm in a sheared environment. The forecast verification shows that HWRF captured well Earl's observed evolution of intensity, convection asymmetry, wind field asymmetry, and vortex tilt in terms of magnitude and direction in the pre rapid and rapid intensification (RI) stages. Examination of the high-resolution forecast data reveals that the tilt was large at the RI onset and decreased quickly once RI commenced, suggesting that vertical alignment is the result instead of the trigger for RI. The RI onset is associated with the development of upper-level warming in the eye, which results from upper-level storm-relative flow advecting the warm air caused by subsidence warming in the upshear-left region toward the low-level storm center. This scenario does not occur until persistent convective bursts (CB) are concentrated in the downshear-left quadrant. The temperature budget calculation indicates that horizontal advection plays an important role in the development of upper-level warming in the early RI stage. The upper-level warming associated with the asymmetric intensification process occurs by means of the cooperative interaction of the convective-scale subsidence, resulting from CBs in favored regions and the shear-induced mesoscale subsidence. When CBs are concentrated in the downshear-left and upshear-left quadrants, the subsidence warming is maximized upshear and then advected toward the low-level storm center by the storm-relative flow at the upper level. Subsequently, the surface pressure falls and RI occurs.
机译:在本研究中,根据观测结果验证了运行中的飓风伯爵(2010)的飓风天气研究与预报(HWRF)系统的预报结果,并进行了分析,以了解剪切环境中风暴的不对称快速加剧。预测验证表明,HWRF很好地记录了Earl在快速增强和快速增强(RI)阶段在强度和对流不对称,风场不对称以及涡旋倾斜的大小和方向方面的演变。对高分辨率预报数据的检查表明,倾斜在RI开始时就很大,一旦RI开始就迅速减小,这表明垂直对准是结果,而不是RI的触发因素。 RI发病与眼睛上层暖化的发展有关,这是由于上层左旋相对气流将由沉降向左上偏区的暖化向低层风暴中心的温暖空气平流所致。直到持续的对流爆发(CB)集中在左剪切左象限中,这种情况才会发生。温度预算的计算表明,水平对流在RI早期阶段对高层变暖的发展中起着重要作用。与不对称强化过程相关的高层变暖是通过对流尺度沉降的协同作用而发生的,这是由于有利区域的CB和剪切诱发的中尺度沉降所引起的。当CB集中在左下剪切象限和左上剪切象限时,下沉变暖被最大化地上升,然后由上层的风暴相对流向低层风暴中心推进。随后,表面压力下降并且发生RI。

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