...
首页> 外文期刊>Journal of the Atmospheric Sciences >Theoretical Analysis of the Entrainment-Mixing Process at Cloud Boundaries. Part I: Droplet Size Distributions and Humidity within the Interface Zone
【24h】

Theoretical Analysis of the Entrainment-Mixing Process at Cloud Boundaries. Part I: Droplet Size Distributions and Humidity within the Interface Zone

机译:云边界夹带混合过程的理论分析。 第一部分:界面区域内的液滴尺寸分布和湿度

获取原文
获取原文并翻译 | 示例
           

摘要

The problem of a complex entrainment-mixing process is analyzed by solving a diffusion-evaporation equation for an open region in the vicinity of the cloud-dry air interface. Upon normalization the problem is reduced to a one-parametric one, the governing parameter being the potential evaporation parameter R proportional to the ratio of saturation deficit in the dry air to the available liquid water content in the cloud air. As distinct from previous multiple studies analyzing mixing within closed adiabatic volumes, we consider a principally nonstationary problem that never leads to a homogeneous equilibrium state. It is shown that at R -1 the cloud edge shifts toward the cloud; that is, the cloud dissipates due to mixing with dry air, and the cloud volume decreases. If R -1, the cloud edge shifts outside; that is, the mixing leads to an increase in the cloud volume. The time evolution of droplet size distribution and its moments, as well as the relative humidity within the expanding cloud-dry air interface, are calculated and analyzed. It is shown that the values of the mean volume radii rapidly decrease within the interface zone in the direction away from the cloud, indicating significant changes in the cloud edge microstructure. Scattering diagrams plotted for the cloud edge agree well with high-frequency in situ measurements, corroborating the reliability of the proposed approach. It is shown that the humidity front moves toward dry air faster than the front of liquid water content. As a result, the mixing leads to formation of a humid air shell around the cloud. The widths of the interface zone and humid shell are evaluated.
机译:通过求解云 - 干燥空气接口附近的开口区域的扩散蒸发方程来分析复杂夹带混合过程的问题。在归一化时,问题减少到单个参数,控制参数是与干燥空气中的饱和度不足与云空气中可用液体含水量的潜在蒸发参数r比例成比例。与先前多项研究不同,分析在封闭的绝热体内混合中,我们考虑一个主要是非导致均匀均衡状态的主要不存在的问题。结果表明,在R& -1云边缘转向云;也就是说,由于与干燥空气混合而云散消,并且云体积减小。如果R> -1,云边缘换档;也就是说,混合导致云体积增加。计算液滴尺寸分布及其时刻的时间展现,以及扩展云干燥空中接口内的相对湿度,并分析。结果表明,均量半径的值在远离云的方向上在界面区域内快速减小,表明云边缘微结构的显着变化。绘制云边缘的散射图与高频原位测量相一致,证实了所提出的方法的可靠性。结果表明,湿度前沿比液体含水量的前部更快地走向干燥空气。结果,混合导致在云周围形成潮湿的空气壳。评估界面区域和湿壳的宽度。

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