首页> 外文期刊>Monthly Weather Review >Vertical Variability of Cloud Hydrometeors in the Stratiform Region of Mesoscale Convective Systems and Bow Echoes
【24h】

Vertical Variability of Cloud Hydrometeors in the Stratiform Region of Mesoscale Convective Systems and Bow Echoes

机译:中尺度对流系统和弓回波层状地区云水气指数的垂直变化

获取原文
获取原文并翻译 | 示例
       

摘要

During the Bow Echo and Mesoscale Convective Vortex Experiment, the NOAA P-3 research aircraft executed 17 spiral descents to the rear of convective lines to document the vertical variability of hydro-meteors above, within, and below the stratiform melting layer. Ten spirals were behind lines that exhibited bowing at some stage in their evolution. Although quick descents on some spirals forced sampling of different particle zones, clear trends with respect to temperature were seen. For 16 spirals, the ambient relative humidity with respect to ice was in the range of 100% ± 4% at temperatures between - 10℃ and the melting layer, but exhibited steady decreases below the melting layer to an average relative humidity with respect to water of 77% ± 15% at 9℃. In contrast, one spiral conducted on 29 June 2003 directly behind a developing bow echo had a relative humidity with respect to ice averaging 85% at heights above the 0℃ level and relative humidity with respect to ice further decreased below the 0℃ level to a minimum relative humidity with respect to water of 48% at 9℃. Vertical profiles of particle shapes, size distributions (SDs), total mass contents (TMC), number concentrations, and parameters of gamma distributions fit to SDs were computed using optical array probe data in conjunction with measurements of radar reflectivity from the P-3 X-band tail radar. For spirals with humidity at or near saturation above the melting layer, melting particles occurred through about 300 m of cloud depth between 0° and 2° or 3℃. Above the melting layer, number concentrations, dominated by smaller crystals, decreased at 19% ± 10% ℃~(-1), faster than the 10% ± 7% ℃~(-1) decrease of TMC dominated by larger particles. Increases in the numbers of crystals with a maximum dimension < 2 mm (N_(<2)) and in the slope parameter with temperature also occurred. To the extent that in-cloud heterogeneity did not complicate observed trends, these trends suggest aggregation dominated the evolution of SDs. Observations on 29 June differ from other days and are explained by the unique position and timing of the spiral in subsaturated air behind a developing bow. On 29 June the presence of an isothermal layer at 2.5℃ suggested that sublimative cooling delayed the onset of melting. Ice at 7℃ showed that melting particles were present through 500 m of cloud depth. A slight decrease in N_(<2), but no decrease in the slope parameter, with temperature suggested that sublimation modified the impact of aggregation. Sublimative cooling would only have been significant at the location of the 29 June spiral. For other spirals, evaporative cooling below the melting layer in subsaturated regions was the most important diabatic processes in the stratiform regions at the time of the observations.
机译:在Bow Echo和中尺度对流涡旋实验期间,NOAA P-3研究飞机在对流线后方执行了17次螺旋下降,以记录层状融化层上方,内部和下方的水流星的垂直变化。线后有十个螺旋线,它们在进化的某个阶段表现出弯曲。尽管某些螺旋形的快速下降迫使对不同的颗粒区域进行采样,但是在温度方面却看到了明显的趋势。对于16个螺旋线,在-10℃和融化层之间的温度下,相对于冰的环境相对湿度在100%±4%的范围内,但在融化层以下显示出相对于水的平均相对湿度稳定下降。在9℃时为77%±15%。相比之下,2003年6月29日在正在发展的弓形回波之后直接进行的一个螺旋在0℃以上的高度相对于冰的相对湿度平均为85%,而相对于冰的相对湿度在0℃以下的温度下进一步降低至a。在9℃时,相对于水的最小相对湿度为48%。粒子形状,尺寸分布(SD),总质量含量(TMC),数量浓度和适合于SD的伽玛分布参数的垂直剖面是使用光学阵列探针数据结合P-3 X的雷达反射率测量值计算得出的带尾雷达。对于湿度在融化层以上或接近饱和状态的螺旋形,在0°至2°或3℃之间的约300 m的云层深度中会出现融化颗粒。在熔化层以上,以较小晶体为主的数浓度在19%±10%℃〜(-1)处下降,快于以较大颗粒为主的TMC的10%±7%℃〜(-1)下降。最大尺寸<2 mm(N _(<2))的晶体数量以及温度的斜率参数也会增加。在一定程度上,云中的异构性不会使观察到的趋势复杂化,这些趋势表明聚集主导了SD的演化。 6月29日的观测值与其他日期不同,并且可以通过发育中的弓后部的不饱和空气中的涡旋的独特位置和时间来解释。 6月29日,温度为2.5℃的等温层的存在表明升华冷却会延迟熔化的开始。在7℃的冰中显示,在500 m的云深中存在融化的颗粒。随着温度的升高,N _(<2)略有下降,但斜率参数没有下降,这表明升华作用改变了聚集的影响。仅在6月29日螺旋形升华时,升华冷却才有意义。对于其他螺旋而言,在观测时,亚饱和区域熔融层以下的蒸发冷却是层状区域中最重要的绝热过程。

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