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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Predictability and uncertainty in a regional climate model - art. no. 4586
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Predictability and uncertainty in a regional climate model - art. no. 4586

机译:区域气候模型中的可预测性和不确定性-艺术。没有。 4586

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1] The evaluation of the quality and usefulness of climate modeling systems is dependent upon an assessment of both the limited predictability of the climate system and the uncertainties stemming from model formulation. In this study a methodology is presented that is suited to assess the performance of a regional climate model (RCM), based on its ability to represent the natural interannual variability on monthly and seasonal timescales. The methodology involves carrying out multiyear ensemble simulations (to assess the predictability bounds within which the model can be evaluated against observations) and multiyear sensitivity experiments using different model formulations (to assess the model uncertainty). As an example application, experiments driven by assimilated lateral boundary conditions and sea surface temperatures from the ECMWF Reanalysis Project (ERA-15, 1979-1993) were conducted. While the ensemble experiment demonstrates that the predictability of the regional climate varies strongly between different seasons and regions, being weakest during the summer and over continental regions, important sensitivities of the modeling system to parameterization choices are uncovered. In particular, compensating mechanisms related to the long-term representation of the water cycle are revealed, in which summer dry and hot conditions at the surface, resulting from insufficient evaporation, can persist despite insufficient net solar radiation (a result of unrealistic cloud-radiative feedbacks). [References: 58
机译:1]对气候建模系统的质量和有用性的评估取决于对气候系统有限的可预测性和模型制定所带来的不确定性的评估。在这项研究中,提出了一种方法,该方法可根据区域气候模型(RCM)表示月度和季节时标上自然年际变化的能力来评估其性能。该方法论涉及进行多年合奏模拟(以评估可观察性评估模型的可预测性范围)和使用不同模型公式(评估模型不确定性)的多年敏感性实验。作为示例应用,进行了由ECMWF再分析项目(ERA-15,1979-1993年)吸收的横向边界条件和海面温度驱动的实验。虽然整体实验表明,不同季节和地区之间区域气候的可预测性差异很大,夏季和整个大陆地区最弱,但仍未发现建模系统对参数化选择的重要敏感性。特别是,揭示了与水循环的长期代表有关的补偿机制,其中尽管太阳辐射净额不足(由于不切实际的云辐射所致),由于蒸发不足造成的夏季地面干燥和炎热条件仍会持续存在反馈)。 [参考:58

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