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The Role of Latent Heat Flux in Tropical Cyclogenesis over the Western North Pacific: Comparison of Developing versus Non-Developing Disturbances

机译:潜热通量在北太平洋西部热带气旋形成中的作用:发展中和非发展中干扰的比较

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The possible role of air–sea latent heat flux (LHF) in tropical cyclone (TC) genesis over the western North Pacific (WNP) is investigated using state-of-the-art satellite and analysis datasets. The authors conducted composite analyses of several meteorological variables after identifying developing and non-developing tropical disturbances from June to October of the period 2000 to 2009. Compared to the non-developing disturbances, increased LHF underlying the developing disturbances enhances boundary–layer specific humidity. The secondary circulation then transports more boundary–layer moisture inward and upward and, thus, induces a stronger moist core in the middle troposphere. Accordingly, the air in the core region ascends following a warmer moist adiabat than that in the environment and results in a stronger upper-level warm core, which is associated with a stronger near-surface tangential wind based on the thermal wind balance. This enlarges the magnitude and negative radial gradient of LHF and, thereby, further increases boundary–layer specific humidity. A tropical depression forms when the near-surface tangential wind increases to a certain extent as a result of the continuing positive feedback between near-surface wind and LHF. The results suggest an important role of wind-driven LHF in TC genesis over the WNP.
机译:利用最新的卫星和分析数据集,研究了北海西部(WNP)热带气旋(TC)发生过程中海海潜热通量(LHF)的可能作用。作者在确定2000年至2009年6月至10月的发展中和非发展中的热带扰动后,对几个气象变量进行了综合分析。与非发展中的扰动相比,发展中扰动下的LHF升高会提高边界层的比湿度。然后,二次循环将更多的边界层水分向内和向上运输,从而在对流层中层引起更强的湿核。因此,芯部区域中的空气在比环境中的湿绝热体更热的情况下上升,并导致更强的上层温暖芯部,这与基于热风平衡的更强的近表面切向风有关。这扩大了LHF的幅度和负径向梯度,从而进一步增加了边界层的比湿度。当近地面切向风在一定程度上由于近地面风和LHF之间持续的正反馈而形成热带低压时,就会形成热带低压。结果表明,风力驱动的LHF在WNP上的TC发生中具有重要作用。

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