...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Land-surface, boundary layer, and cloud-field coupling over the southwestern Amazon in ERA-40
【24h】

Land-surface, boundary layer, and cloud-field coupling over the southwestern Amazon in ERA-40

机译:陆地表面、边界层和cloud-field耦合在ERA-40西南亚马逊

获取原文
获取原文并翻译 | 示例
           

摘要

Models are powerful tools for understanding the coupling of physical processes. We illustrate this using averages from ERA-40 for the Madeira River, a southwestern basin of the Amazon, which has a large seasonal cycle with a dry season in the austral winter. Daily-mean land-surface fluxes and state variables can be used to map the transitions of the surface “climate” of a model and to quantify the links between the soil moisture, the mean cloud-base and cloud field, the shortwave and longwave radiation fields at the surface, the vertical motion field, the atmospheric precipitable water, and the surface precipitation. The links that are visible on a daily timescale can also be seen on the seasonal timescale. Several important surface processes are strongly influenced by soil moisture: relative humidity, which gives the mixed subcloud layer depth, low cloud cover, and the surface net long-wave flux. The link between soil moisture and equivalent potential temperature can therefore be clearly seen once the temperature dependence is filtered. Surface evaporation is controlled as much by the feedback of the cloud field on the surface radiation budget as by soil moisture. Above the surface the cloud field and precipitation are coupled to the large-scale dynamics, specifically the midtropospheric omega field. The shortwave cloud forcing of the atmosphere and the surface is given by the cloud field albedo at the top of the atmosphere to better than 1%. We have developed a new methodology for understanding the coupling and feedbacks between physical processes in models, so that different models can be compared with each other and with data.
机译:模型是理解的有力工具耦合的物理过程。使用平均从ERA-40马德拉亚马逊河盆地西南部的有一个很大的季节性周期的旱季吗南国的冬天。通量和状态变量可以用来映射转换的表面模型的“气候”和量化土壤之间的联系水分,意味着云底和云领域,短波和长波辐射领域表面,垂直运动领域大气可降水和地表降水。每天的时间表也可以出现在季节性时间表。深受土壤水分:相对湿度,使混合subcloud混合层深度、低云量和表面净长波通。温度和等效的潜力因此,清楚地看到曾经的温度过滤的依赖。云控制尽可能多的反馈场土壤表面辐射预算水分。降水是大规模耦合动力学,特别是midtroposphericω字段。大气和云的表面反照率在大气层的顶端比1%。方法的耦合和理解物理过程模型之间的反馈,所以,不同的模型可以与之相比彼此和数据。

著录项

相似文献

  • 外文文献
  • 中文文献
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