洱海盆地一次冬季大風演變特征及其機制模擬分析
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云南省氣象局科研項目(TQ201703)資助


Evolutionary Characteristic and Its Mechanism Simulation of a Winter Gale Event in Erhai Basin
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    摘要:

    利用WRF模式耦合Noah陸面模式和CLM湖泊模式,對2015年1月23日大理地區洱海盆地的大風天氣進行模擬,對大風的發展期、強盛期和減弱期的三維動力熱力結構特征進行分析,并得出了洱海盆地大風形成機制:在洱海盆地大風發展期,高空以西風為主,盆地中部上空1 km高度處出現局地小氣旋,地面以偏東風為主,高空偏西氣流翻越蒼山形成波動擾動,在背風坡側形成空腔區和二次渦,低層形成了波不穩定區域,波不穩定區域發生波破碎,波破碎區域湍流運動活躍,把上層的能量往下傳播。大風強盛期,盆地南北側高空為兩支西風氣流控制,中部變為弱的輻散場,造成高空擾動,蒼山東側近地面淺薄逆溫層消失,低空逆溫層之上溫度廓線幾乎垂直上升,大氣層結處于不穩定狀態,有利于高空動量向下輸送。大風減弱期,高空西風減弱,擾動消失,湍流動能耗散,地面風速逐漸減小。

    Abstract:

    In this paper, coupling with the Noah land surface model and CLM lake model, the WRF model is used to simulate a gale event in the Erhai basin, Dali of Yunnan Province on 23 January 2015. An analysis is made of the characteristics of 3D dynamic and thermal structure in the onset, prevailing and retreat periods of the gale and its mechanism is analyzed. In the onset period of gale, the west wind dominated in the upper atmosphere, the local small cyclone appeared at the height of 1 km around the central Erhai basin, and the east wind dominated on the ground. The westerly flow in the upper atmosphere created fluctuation disturbance over Mt. Cangshan, and the cavity zone and secondary vertex in the leeward slope, and unstable wave region in the lowerlevel atmosphere. The unstable wave broke in the lowerlevel atmosphere, where the turbulences were quite active. The energy in the upper atmosphere was transported downwards. In the prevailing period of the gale, the upper atmosphere over the south and north parts of the Erhai basin was controlled by two westerly flows, while the upper atmosphere over the central part of the basin was a weak divergence field. This structure over the Erhai basin brought about disturbance in the upper atmosphere, which made the shallow inversion layer near the surface layer over the east part of Mt. Cangshan disappear, and temperature above this shallow inversion layer increase with height. The atmosphere was unstable and beneficial to momentum being transported downwards from the upper atmosphere. In the retreat period of the gale, the west wind in the upper atmosphere weakened, the disturbance disappeared, turbulent kinetic energy dissipated, and the wind at ground level decreased.

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楊澄,付志嘉.洱海盆地一次冬季大風演變特征及其機制模擬分析[J].氣象科技,2020,48(5):675~684

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  • 收稿日期:2019-05-24
  • 定稿日期:2020-05-22
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  • 在線發布日期: 2020-10-26
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