A comparison of summer precipitation structures over the South China Sea and the East China Sea based on tropical rainfall measurement mission

A comparison of summer precipitation structures over the South China Sea and the East China Sea based on tropical rainfall measurement mission
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基于热带测雨任务的南海和东海夏季降水结构比较

DOI:
10.1007/s13131-013-0376-3
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发表时间:
2013-11
影响因子:
1.4
通讯作者:
Li Weibiao
Li Weibiao
中科院分区:
地球科学2区
文献类型:
--
作者:
Yang Chaofeng;Li Fangzhou;He Qihua;Li Weibiao

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基于热带降水测量任务(TRMM),研究了南海和东海夏季降水的三维结构。主要结果如下:首先,南海的对流和层状降水速率都远高于东中国海。对流云降水对地面降水的贡献主要在南海和东中国海上空,所占比例约为70%,但对流云降水在南海的贡献略大于东中国海。层降水在东中国海的贡献略大于南海。(2) 6月ECS云和降水粒子含量大于南海,而7、8月ECS云和降水粒子含量小于南海。第三,东中国海潜热廓线与南海潜热廓线存在较大差异。6月,东中国海的蒸发潜热率和凝结潜热率峰值均大于南海。7月和8月,东中国海的蒸发潜热率和凝结潜热率峰值比南海低0.05°/h左右。
The three-dimensional structures of summer precipitation over the South China Sea (SCS) and the East China Sea (ECS) are investigated based on tropical rainfall measurement mission (TRMM). The primary results are as follows. First, both the convective and stratiform precipitation rates in the SCS are much higher than those of the ECS. The contribution of the convective cloud precipitation to the surface precipitation is primarily over the SCS and the ECS with a proportion of about 70%, but the contribution of convective cloud precipitation is slightly larger in the SCS than the ECS. The contribution of stratus precipitation is slightly larger in the ECS than that in the SCS. Second, the content of cloud particles and precipitation particles in the ECS in June was greater than that in the SCS, while in July and August, the content of cloud and precipitation particles in the ECS was less than that in the SCS. Third, the latent heat profile of the ECS is quite different from that of the SCS. In June, the peak values of evaporation and condensation latent heating rates in the ECS are greater than those in the SCS. In July and August, however, the peak values of evaporation and condensation latent heating rates in the ECS are about 0.05°/h less than those in the SCS.
DOI: 10.1175/1520-0450(2001)040
发表时间: 2001-08
期刊: Journal of Applied Meteorology
影响因子: --
作者:
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发表时间: 2013-08
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发表时间: 2003-07
影响因子: 5.8
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