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首页> 外文期刊>Journal of Climate >Tripleclouds: an efficient method for representing horizontal cloud inhomogeneity in 1D radiation schemes by using three regions at each height.
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Tripleclouds: an efficient method for representing horizontal cloud inhomogeneity in 1D radiation schemes by using three regions at each height.

机译:Tripleclouds:一种在一维辐射方案中通过在每个高度使用三个区域来表示水平云不均匀性的有效方法。

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Radiation schemes in general circulation models currently make a number of simplifications when accounting for clouds, one of the most important being the removal of horizontal inhomogeneity. A new scheme is presented that attempts to account for the neglected inhomogeneity by using two regions of cloud in each vertical level of the model as opposed to one. One of these regions is used to represent the optically thinner cloud in the level, and the other represents the optically thicker cloud. So, along with the clear-sky region, the scheme has three regions in each model level and is referred to as "Tripleclouds." In addition, the scheme has the capability to represent arbitrary vertical overlap between the three regions in pairs of adjacent levels. This scheme is implemented in the Edwards-Slingo radiation code and tested on 250 h of data from 12 different days. The data are derived from cloud retrievals using radar, lidar, and a microwave radiometer at Chilbolton, southern United Kingdom. When the data are grouped into periods equivalent in size to general circulation model grid boxes, the shortwave plane-parallel albedo bias is found to be 8%, while the corresponding bias is found to be less than 1% using Tripleclouds. Similar results are found for the longwave biases. Tripleclouds is then compared to a more conventional method of accounting for inhomogeneity that multiplies optical depths by a constant scaling factor, and Tripleclouds is seen to improve on this method both in terms of top-of-atmosphere radiative flux biases and internal heating rates.
机译:当考虑云时,一般环流模型中的辐射方案目前进行了许多简化,其中最重要的一项是消除水平不均匀性。提出了一种新方案,该方案试图通过在模型的每个垂直级别使用两个云区域而不是一个来解决被忽略的不均匀性。这些区域中的一个用来表示水平上的光学上较薄的云,另一个区域表示在光学上较厚的云。因此,与晴空区域一起,该方案在每个模型级别具有三个区域,被称为“三重云”。另外,该方案具有表示成对的相邻层中的三个区域之间的任意垂直重叠的能力。该方案以Edwards-Slingo辐射代码实施,并在12个不同日期的250小时数据中进行了测试。数据来自英国南部奇尔伯顿的雷达,激光雷达和微波辐射计的云层检索。当将数据分组为与普通循环模型网格框大小相等的周期时,使用Tripleclouds发现短波平面平行反照率偏差为8%,而相应的偏差小于1%。对于长波偏置也发现了类似的结果。然后将三重云与一种更传统的不均匀性计算方法进行比较,该方法将光学深度乘以恒定的比例因子,并且三重云在大气顶辐射通量偏差和内部加热速率方面都得到了改进。

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