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Extended Simulation of Tropical Cyclone Formation in the Western North Pacific Monsoon Trough

机译:北太平洋季风槽内热带气旋形成的扩展模拟

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Previous studies suggest that the low-frequency background makes an important contribution to the predictability of tropical cyclone (TC) activity on the intraseasonal time scale by providing large-scale conditions favorable for TC formation. Extended numerical experiments were conducted to demonstrate additional low-frequency influence on TC activity, which results from the development of a synoptic-scale wave train. The cyclonic circulation of the wave train provides low-level synoptic-scale disturbances for TC formation.The observed TC formation events over the western North Pacific during 14 August-10 September 2004 were first successfully simulated with the initial and lateral conditions derived from the National Centers for Environmental Prediction (NCEP) Final (FNL) Operational Global Analysis. Then the 27-day extended experiment was repeated only with the initial and lateral boundary conditions derived from the FNL low-frequency (longer than 20 days) background. It is found that the development of the synoptic-scale wave train can be well simulated with TCs forming in the cyclonic circulations of the wave train although the wavelength of the simulated wave train is substantially reduced in the absence of higher-frequency influences with periods shorter than 20 days. Sensitivity experiments indicate that the development of wave trains is sensitive to the initial monsoon trough structure. This study suggests that the synoptic-scale wave train can develop in situ and does not need upstream precursors.
机译:先前的研究表明,低频背景通过提供有利于TC形成的大规模条件,对季节内时间尺度上的热带气旋(TC)活动的可预测性做出了重要贡献。进行了扩展的数值实验,以证明对低频天气活动的额外低频影响,这是由天气尺度波列的发展产生的。波列的气旋环流为TC形成提供了低层天气尺度的扰动.2004年8月14日至9月10日在北太平洋西部观测到的TC形成事件首次成功地模拟了来自美国国家气象局的初始和横向条件。环境预测中心(NCEP)最终(FNL)运营全球分析。然后,仅使用源自FNL低频(大于20天)背景的初始和横向边界条件重复进行27天的扩展实验。研究发现,虽然在没有较高频率影响的情况下,模拟波列的波长被大大减小,但周期较短,利用在波列旋风循环中形成的TC可以很好地模拟天气尺度波列的发展。超过20天。敏感性实验表明,波浪列车的发展对初始季风槽结构很敏感。这项研究表明,天气尺度尺度的波列可以原位发育,不需要上游前兆。

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