首页> 外文期刊>Atmospheric chemistry and physics >Derivation of physical and optical properties of mid-latitude cirrus ice crystals for a size-resolved cloud microphysics model
【24h】

Derivation of physical and optical properties of mid-latitude cirrus ice crystals for a size-resolved cloud microphysics model

机译:大小分辨云微观物理模型的中纬度卷积冰晶体的物理和光学性质的推导

获取原文
           

摘要

Single-crystal images collected in mid-latitude cirrus are analyzed to provide internally consistent ice physical and optical properties for a size-resolved cloud microphysics model, including single-particle mass, projected area, fall speed, capacitance, single-scattering albedo, and asymmetry parameter. Using measurements gathered during two flights through a widespread synoptic cirrus shield, bullet rosettes are found to be the dominant identifiable habit among ice crystals with maximum dimension (iD/isubmax/sub) greater than 100 μm. Properties are therefore first derived for bullet rosettes based on measurements of arm lengths and widths, then for aggregates of bullet rosettes and for unclassified (irregular) crystals. Derived bullet rosette masses are substantially greater than reported in existing literature, whereas measured projected areas are similar or lesser, resulting in factors of 1.5–2 greater fall speeds, and, in the limit of large iD/isubmax/sub, near-infrared single-scattering albedo and asymmetry parameter (ig/i) greater by ?~??0.2 and 0.05, respectively. A model that includes commonly imaged side plane growth on bullet rosettes exhibits relatively little difference in microphysical and optical properties aside from ?~?0.05 increase in mid-visible ig/i primarily attributable to plate aspect ratio. In parcel simulations, ice size distribution, and ig/i are sensitive to assumed ice properties.
机译:分析在中纬度卷云中收集的单晶图像,以提供内部一致的冰物理和光学特性,用于尺寸分辨的云微观物理模型,包括单粒子质量,投影面积,下降速度,电容,单散射反照率和不对称参数。使用在两次飞行中通过广泛的天气卷云盾收集的测量数据,发现子弹形花样是最大尺寸( D max )大于100的冰晶中的主要可识别习惯。微米因此,首先根据臂长和宽度的测量结果得出子弹形玫瑰花结的属性,然后是子弹形玫瑰花结的聚集体和未分类(不规则)晶体的属性。衍生的子弹花环质量明显大于现有文献报道的质量,而测得的投影面积相似或更小,导致坠落速度增加1.5–2倍,并且在较大的范围内> max ,近红外单散射反照率和不对称参数( g )分别增大α〜Δ0.2和0.05。包括通常成像在子弹形花环上的侧面生长的模型,除了主要归因于板的宽高比的中可见光 g 的增加~~ 0.05之外,其微物理和光学性质的变化相对较小。在包裹模拟中,冰的大小分布和 g 对假定的冰属性敏感。

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