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2024年6月广西一次双雨带极端暴雨成因分析
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作者 黄子怡 刘国忠 +1 位作者 朱泳桦 刘日胜 《气象研究与应用》 2024年第4期21-27,共7页
利用多源资料,对2024年6月8—10日广西出现的一次双雨带极端暴雨天气过程进行诊断分析。结果表明:(1)此次过程出现桂北和沿海近东西向双雨带,北雨带水平尺度大、对流较南雨带弱及持续时间长,南雨带范围小、对流旺盛及持续时间短。(2)过... 利用多源资料,对2024年6月8—10日广西出现的一次双雨带极端暴雨天气过程进行诊断分析。结果表明:(1)此次过程出现桂北和沿海近东西向双雨带,北雨带水平尺度大、对流较南雨带弱及持续时间长,南雨带范围小、对流旺盛及持续时间短。(2)过程期间广西高空为有利的辐散场,副热带高压缓慢西伸,西风带短波槽东移引导低层切变线和地面静止锋进入桂北少动造成锋面雨带,低空偏南气流携带高能高湿大气在海岸线地形辐合造成暖区雨带。(3)北雨带云顶亮温较高,回波强度较南雨带弱,南雨带云顶亮温较低,回波强度强。(4)北部湾边界层急流在出口区辐合配合低层弱辐散场,使沿海对流持续发展,并构建对北雨带的正反馈机制。在逐渐增强的锋生和边界层急流影响下,气团被抬升释放对流不稳定造成双雨带。 展开更多
关键词 华南暴雨 双雨带 锋面暴雨 暖区暴雨
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Effects of surface drag on low-level frontogenesis within baroclinic waves 被引量:2
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作者 ZHANG Yi TAN ZheMin 《Science China Earth Sciences》 SCIE EI CAS 2007年第2期306-319,共14页
Using a three-dimensional nonhydrostatic mesoscale numerical model (MM5), the evolution and structures of baroclinic waves with and without surface drag in case of dry and moist atmosphere are simulated, with special ... Using a three-dimensional nonhydrostatic mesoscale numerical model (MM5), the evolution and structures of baroclinic waves with and without surface drag in case of dry and moist atmosphere are simulated, with special emphases on the effects of surface drag on the low-level frontal structure and frontogenesis. There are two different effects of surface drag on the low-level frontogenesis in the dry case. On one hand, the surface drag weakens the low-level frontogenesis and less inclined to develop the baroclinic wave due to the dissipation. But on the other hand, the surface drag induces a strong ageostrophic flow, which prolongs the low-level frontogenesis and finally leads to the enhancement of cold front. Compared with the no surface drag case, the surface drag increases the frontal slope espe- cially in the boundary layer, where the front is almost vertical to the surface, and then enhances the prefrontal vertical motion. All these conclusions expanded the analytical theory of Tan and Wu (1990). In the moist atmosphere, the influence of surface drag on frontal rainbands is also obvious. The surface drag weakens the convection, and reduces the energy dissipation near the surface when the initial relative humidity is relatively weak. At this time, the confluence induced post-frontal updrafts moves across the cold front and reinforces the prefrontal convection, which is beneficial to the maintenance of the rainband in cold sector. Given the enhancement of relative humidity, the moist convection domi- nates the low-level frontogenesis while the retardation of surface drag on energy dissipation is not obvious, therefore the effects of surface drag on the low-level frontogenesis and precipitation are re- duced. 展开更多
关键词 SURFACE drag BAROCLINIC wave FRONTOGENESIS diabatic HEATING frontal rainband
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