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Simulations of Tropical Circulation and Winter Precipitation Over North India: an Application of a Tropical Band Version of Regional Climate Model (RegT-Band)

机译:印度北部热带环流和冬季降水的模拟:热​​带带版本区域气候模型(RegT波段)的应用

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In the present study, simulations have been carried out to study the relationship between winter-time precipitations and the large-scale global forcing (ENSO) using the tropical band version of Regional Climate Model (RegT-Band) for 5 El Nio and 4 La Nia years. The RegT-Band model is integrated with the observed sea-surface temperature and lateral boundary conditions from National Center for Environmental Prediction (NCEP)-Department of Energy (DOE) reanalysis 2 (NCEP-DOE2). The model domain extends from 50A degrees S to 50A degrees N and covers the entire tropics at a grid spacing of 45 km, i.e., it includes lateral boundary forcing only at the southern and northern boundaries. The performance evaluation of the model in capturing the large-scale fields followed by ENSO response with winter-time precipitation has been carried out by using model simulations against NCEP-DOE2 and Global Precipitation Climatology Project (GPCP) precipitation data. The analysis suggests that the model is able to reproduce the upper airfields and large-scale precipitation during winter time, although the model has some systematic biases compared to the observations. A comparison of model-simulated precipitation with observed precipitation at 17 station locations has been carried out. It is noticed that the RegT-Band model simulations are able to bring out the observed features reasonably well. Therefore, this preliminary study indicates that the tropical band version of the regional climate model can be effectively used for the better understanding of the large-scale global forcing.
机译:在本研究中,使用热带气候带版本的区域气候模式(RegT-Band)对5 El Nio和4 La进行了模拟研究,以研究冬季降水与大规模全球强迫(ENSO)之间的关系。尼亚岁月。 RegT-Band模型与国家环境预测中心(NCEP)-能源部(DOE)重新分析2(NCEP-DOE2)观测到的海面温度和横向边界条件相结合。模型域从50°S延伸到50°N,并以45 km的网格间距覆盖整个热带,即,它仅包括在南部和北部边界处的横向边界。通过使用针对NCEP-DOE2和全球降水气候学项目(GPCP)降水数据的模型模拟,已经进行了该模型在捕获大范围油田,随后进行ENSO冬季降水响应的性能评估。分析表明,该模型能够重现冬季的高空机场和大规模降水,尽管与观测值相比该模型存在一些系统性偏差。已对模型模拟的降水量与在17个观测站位置观测到的降水量进行了比较。值得注意的是,RegT-Band模型仿真能够很好地展现观察到的特征。因此,这项初步研究表明,区域气候模型的热带带版本可以有效地用于更好地理解大规模全球强迫。

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