...
首页> 外文期刊>SOLA: Scientific Online Letters on the Atmosphere >Numerical Examination of the Diurnal Variation of Summer Precipitation over Southern China
【24h】

Numerical Examination of the Diurnal Variation of Summer Precipitation over Southern China

机译:中国南方夏季降水日变化的数值检验

获取原文
           

摘要

References(28) Cited-By(4) Supplementary materials(3) Diurnal variation of precipitation is frequently observed over southern China in summer. We investigate it using the regional version of the nonhydrostatic icosahedral atmospheric model (NICAM), with particular focus on the interactions among land, cloud, and radiation processes. The NICAM almost exactly reproduces the diurnal variation of precipitation but slightly overestimates its amplitude. The simulated spatial distribution of precipitation is very similar to that observed by the Tropical Rainfall Measuring Mission 3B42 product. Precipitating region propagates inland from the coast during 14-20 LT.We perform sensitivity experiments to study the effects of surface conditions, cloud, and radiation interactions, and the results are as follows. 1) When volumetric soil moisture is reduced, surface temperature increases and surface evaporation decreases. Water vapor inflow increases owing to enhanced land-sea contrast; however, the decrease in surface evaporation counteracts this increase, thus decreasing precipitation. 2) When cloud amount is reduced, net downward radiation and surface temperature increase. Precipitation does not appear to vary with cloud conditions. The zone of the horizontal convergence of water vapor flux propagates inland in the afternoon, although local evaporation has a greater impact than water vapor inflow on the diurnal variation of precipitation.
机译:参考文献(28)被引用的文献(4)补充材料(3)夏季中国南部经常观察到降水的日变化。我们使用非静力二十面体大气模型(NICAM)的区域版本进行调查,特别关注土地,云层和辐射过程之间的相互作用。 NICAM几乎准确地再现了降水的日变化,但略微高估了其振幅。模拟的降水空间分布与热带雨量测量任务3B42产品观察到的非常相似。 LT在14-20 LT期间从沿海向内陆扩散,我们进行了敏感性实验,研究了表面条件,云和辐射相互作用的影响,结果如下。 1)减少土壤水分时,地表温度升高,地表蒸发减少。由于陆海对比增强,水蒸气流入增加;然而,表面蒸发的减少抵消了这种增加,从而减少了降水。 2)减少云量时,净向下辐射和表面温度升高。降水似乎不会随云状况而变化。水汽通量的水平收敛带在下午向内陆传播,尽管局部蒸发比水汽流入对降水的日变化有更大的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号