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Significant Impact of Heat Supply From the Gulf Stream on a 'Superbomb' Cyclone in January 2018

机译:2018年1月在“超级玻璃”旋风上的热量供应对热量的影响

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On 4 January 2018, an extremely rapidly developing extratropical cyclone ("superbomb" cyclone) appeared over the Gulf Stream. To clarify the key process of the intensification of the superbomb cyclone, we specifically examined the role of heat supply from the Gulf Stream by performing cloud-resolving numerical experiments. When the cyclone rapidly developed, sensible and latent heat fluxes from the warm current predominated around the cold conveyor belt (CCB) of the cyclone. These fluxes created a convectively unstable layer near the surface. When the instability was released around the cyclone center, latent heating (LH) occurred. The increased LH further intensified the cyclone and its associated CCB. These findings indicate that the positive feedback process between the CCB and LH played a key role in intensification over the Gulf Stream. In this way, the heat supply from the Gulf Stream significantly impacted the development of the superbomb cyclone.
机译:于2018年1月4日,在海湾流上出现了极其迅速发展的鞋面旋风器(“超级”旋风分离器)。 为了澄清超级旋风器的强化的关键过程,我们通过执行云分辨数值实验来专门检查热源从海湾流中的作用。 当旋风迅速开发,从旋风的冷传送带(CCB)周围的温热电流迅速开发,显着和潜热通量。 这些助熔剂在表面附近产生了一种对流的不稳定层。 当在旋风中心周围释放不稳定性时,发生潜热(LH)。 增加的LH进一步加剧了旋风分离器及其相关的CCB。 这些发现表明,CCB和LH之间的正反馈过程在加强海湾流中发挥了关键作用。 以这种方式,来自海湾流的热源显着影响了超级旋风器的发展。

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