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Simulation of monsoon intraseasonal variability in NCEP CFSv2 and its role on systematic bias

机译:NCEP CFSv2季风季节内变化的模拟及其对系统偏差的作用

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We have evaluated the simulation of Indian summer monsoon and its intraseasonal oscillations in the National Centers for Environmental Prediction climate forecast system model version 2 (CFSv2). The dry bias over the Indian landmass in the mean monsoon rainfall is one of the major concerns. In spite of this dry bias, CFSv2 shows a reasonable northward propagation of convection at intraseasonal (30-60 day) time scale. In order to document and understand this dry bias over the Indian landmass in CFSv2 simulations, a two pronged investigation is carried out on the two major facets of Indian summer monsoon: one, the air-sea interactions and two, the large scale vertical heating structure in the model. Our analysis shows a possible bias in the co-evolution of convection and sea surface temperature in CFSv2 over the equatorial Indian Ocean. It is also found that the simulated large scale vertical heat source (Q1) and moisture sink (Q2) over the Indian region are biased relative to observational estimates. Finally, this study provides a possible explanation for the dry precipitation bias over the Indian landmass in the simulated mean monsoon on the basis of the biases associated with the simulated ocean-atmospheric processes and the vertical heating structure. This study also throws some light on the puzzle of CFSv2 exhibiting a reasonable northward propagation at the intraseasonal time scale (30-60 day) despite a drier monsoon over the Indian land mass.
机译:我们已经在国家环境预测气候预报系统模型版本2(CFSv2)中评估了印度夏季风及其季节内振荡的模拟。人们关注的主要问题之一是平均季风降雨量对印度陆地的干旱偏见。尽管存在这种偏见,但CFSv2在季节内(30-60天)的时间尺度上显示出合理的对流向北传播。为了在CFSv2模拟中记录并理解印度陆地上的这种干燥偏差,对印度夏季风的两个主要方面进行了两项深入的研究:一是海气相互作用,二是大型垂直加热结构在模型中。我们的分析表明,赤道印度洋上CFSv2中对流和海面温度的共同演化可能存在偏差。还发现印度地区上空的模拟大型垂直热源(Q1)和湿气汇(Q2)相对于观测估计值有偏差。最后,本研究基于与模拟海洋-大气过程和垂直加热结构相关的偏差,为模拟平均季风中印度陆地的干降水偏差提供了可能的解释。这项研究还揭示了CFSv2的难题,即尽管印度陆地上的季风较干燥,但在季节内时间尺度(30-60天)表现出合理的向北传播。

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