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利用高精度微压计数据、卫星、地面观测数据和GDAS数据, 对2020年7月29日—30日东北冷涡暴雨过程重力波特征进行分析, 结果表明: 重力波激发了此次暴雨, 在暴雨发生前2—4 h, 出现了周期约128 min的重力波先兆活动; 在暴雨期间, 重力波周期集中在120—180 min; 在强对流发展期间出现了周期为128—256 min的重力波和8—64 min周期更短的重力波. 强对流与重力波相互影响、相互作用. 强对流发展时, 地面出现雷暴高压、冷池、出流边界, 在冷池前方形成气流辐合区; 气流辐合辐散区向前移动, 形成重力波传播, 最终激发暴雨. 重力波先兆活动这一特征对东北冷涡暴雨有一定的指示预警意义.Taking advantage of high-precision microbarograph data, satellite, ground measured data and GDAS data, the characteristics of gravity waves during the cold vortex heavy rainfall in Northeast China on 29−30 July 2020 are analyzed. The results show that the gravity waves initiate this heavy rainfall. In 2−4 h before the heavy rainfall, there appear the precursor activities of gravity waves with a period of about 128 min. During the heavy rainfall, the periods of gravity waves concentrate in a range of 120−180 min. During the development of convective storms, there occur gravity waves with periods in a range of 128−256 min. And severe storms spark the gravity waves with shorter periods (8−64 min). The relationship between rainstorm and gravity wave is interactive. When severe storms develop, there occur thunderstorm high pressure, cold pool and out-flow boundary. In the front of cold pool, there is formed a flow convergence. The convergence and divergence of air flow propagate forward, forming gravity waves and finally triggering the rainstorm. The characteristics of precursor activities of gravity waves may play a positive role in warning heavy rainfall during the cold vortex in Northeast China.
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Keywords:
- gravity waves /
- microbarograph /
- cold vortex in Northeast China /
- heavy rainfall








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