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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Toward a South America Land Data Assimilation System: Aspects of land surface model spin-up using the Simplified Simple Biosphere
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Toward a South America Land Data Assimilation System: Aspects of land surface model spin-up using the Simplified Simple Biosphere

机译:向南美土地数据同化系统:向上地表模型的各个方面使用简化的简单的生物圈

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This paper describes a spin-up experiment conducted over South America using the Simplified Simple Biosphere (SSiB) land surface model to study the process of model adjustment to atmospheric forcing data. The experiment was carried out as a precursor to the use of SSiB in a South American Land Data Assimilation System (SALDAS). The results from an 11 year long recursive simulation using three different initial conditions of soil wetness (control, wet and dry) are examined. The control run was initiated by interpolation of the NCEP/DOE Global Reanalysis-2 (NCEP/DOE R-2) soil moisture data set. In each case the time required for the model to reach equilibrium was calculated. The wet initialization leads to a faster adjustment of the soil moisture field, followed by the control and then the dry initialization. Overall, the final spin-up states using the SSiB-based SALDAS are generally wetter than both the NCEP/DOE R-2 and the Centro de Previsao do Tempo e Estudos Climaticos (CPTEC–Brazilian Center for Weather Forecast and Climate Studies) operational initial soil moisture states, consequently modeled latent heat is higher and sensible heat lower in the final year of simulation when compared with the first year. Selected regions, i.e., in semiarid northeastern Brazil, the transition zone to the south of the Amazon tropical forest, and the central Andes were studied in more detail because they took longer to spin up (up to 56 months) when compared with other areas (less than 24 months). It is shown that there is a rapid change in the soil moisture in all layers in the first 2 months of simulation followed by a subsequent slow and steady adjustment: This could imply there are increasing errors in medium range simulations. Spin-up is longest where frozen soil is present for long periods such as in the central Andes.
机译:本文描述了一个向上的实验进行了使用简化的南美洲简单的生物圈(SSiB)地表模型研究模型调整的过程大气强迫数据。进行了使用SSiB的前兆南美土地数据同化系统(SALDAS)。使用三种不同的递归模拟初始条件的土壤湿度(控制,湿和干燥)。由插值NCEP /能源部的全球化Reanalysis-2 (NCEP / DOE r2)土壤水分数据集。达到平衡计算。初始化会导致更快的调整土壤湿度场,其次是控制然后是干燥的初始化。最终向上州使用SSiB-based SALDAS通常比NCEP / DOE r2都潮湿吗和时间的预测和研究中心Climaticos (CPTEC-Brazilian中心天气预测和气候研究)运营初期土壤水分状态,因此潜在的建模低热量高和显热最后一年的模拟相比第一年。巴西东北部的过渡区南部的亚马逊热带雨林,中央安第斯山脉更详细地研究了因为他们需要更长的时间来旋转(56个月)与其他地区相比(少于24个月)。在所有层土壤水分在第一个2个月的模拟随后紧随其后缓慢而稳定的调整:这可能暗示越来越多的中程中的错误模拟。等长期存在的吗

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