臺風(fēng)“達維”迅速加強數(shù)值模擬研究
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國家公益性行業(yè)科研專項(GYHY201106004)資助


Numerical Simulation of Rapid Intensity Change of Typhoon Damrey
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    摘要:

    利用WRF模式(V311)對0518號臺風(fēng)“達維”(Damrey)進行了72 h的數(shù)值模擬。重點分析了影響臺風(fēng)強度迅速加強的可能機制,結(jié)果表明:①緩慢加強階段,東風(fēng)波與臺風(fēng)高層環(huán)流相互作用形成一條東北—西南走向的外流通道,加強臺風(fēng)高層輻散流出,有利于臺風(fēng)強度加強;垂直風(fēng)切變在積分前12 h減小,臺風(fēng)迅速加強與垂直風(fēng)切變減小間存在滯后性。②迅速加強階段,低層指向臺風(fēng)中心的水汽通量大大增加;海表面熱通量、潛熱通量和水汽通量持續(xù)增強,海表面潛熱通量對臺風(fēng)的能量貢獻遠大于熱通量。③臺風(fēng)眼壁附近的條件性對稱不穩(wěn)定機制激發(fā)斜升氣流,傾斜渦度發(fā)展引起中心附近相對渦度增大,臺風(fēng)整體強度得到加強。

    Abstract:

    A 72hour numerical simulation of Typhoon Damrey is performed by using WRF (V311). The possible mechanism resulted in the rapid intensification is explored. The results show that: (1) Interaction between easterly waves and typhoon’s circulation at upperlevels during the slowly intensify stage induced a broad range of northeastsouthwest direction outflow channel, which increased divergence at upperlevels and was favorable to the intensification; the vertical wind shear reduced in the first 12 hours, and the rapid intensification lagged behind the vertical wind shear decrease.(2)The water vapor flux toward the typhoon’s center at lowerlevels increased magnificently during the rapid intensify stage; the heat flux, latent heat flux and moisture flux, at the sea surface were growing constantly, and the contribution of latent heat flux was greater than that of heat flux. (3) The mechanism of conditional symmtrical instability excited the tilted updraft; the development of slantwise vorticity induced the significant increment of relative vorticity near the typhoon center and promoted the strengthening process.

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官曉軍.臺風(fēng)“達維”迅速加強數(shù)值模擬研究[J].氣象科技,2012,40(2):241~248

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  • 收稿日期:2010-09-11
  • 定稿日期:2011-03-16
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  • 在線發(fā)布日期: 2012-04-23
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