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首页> 外文期刊>Weather and forecasting >Assessment of the Forecast Skill of Multiphysics and Multistochastic Methods within the GRAPES Regional Ensemble Prediction System in the East Asian Monsoon Region
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Assessment of the Forecast Skill of Multiphysics and Multistochastic Methods within the GRAPES Regional Ensemble Prediction System in the East Asian Monsoon Region

机译:在东亚季风地区葡萄区间集合预测系统中多体学和多层方法的预测技能评估

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摘要

To more comprehensively and accurately address model uncertainties in the East Asia monsoon region, a single-physics suite, where each ensemble member uses the same set of physics parameterizations as the control member in combination with multiple stochastic schemes, is developed to investigate if the multistochastic schemes that combine different stochastic schemes together can be an alternative to a multiphysics suite, where each ensemble member uses a different set of physics parameterizations (e.g., cumulus convection, boundary layer, surface layer, microphysics, and shortwave and longwave radiation). For this purpose, two experiments are performed for a summer monsoon month over China: one with a multiphysics suite and the other with a single-physics suite combined with multistochastic schemes. Three stochastic schemes are applied: the stochastically perturbed parameterizations (SPP) scheme, consisting of temporally and spatially varying perturbations of 18 parameters in the microphysics, convection, boundary layer, and surface layer parameterization schemes; the stochastically perturbed parameterization tendencies (SPPT) scheme; and the stochastic kinetic energy backscatter (SKEB) scheme. The combination of the three stochastic schemes is compared with the multiphysics suite in the Global and Regional Assimilation and Prediction Enhanced System-Regional Ensemble Prediction System with a horizontal grid spacing of 15 km. Verification results show that, overall, a single-physics suite that combines SPP, SPPT, and SKEB outperforms the multiphysics suite in precipitation verification and verification for upper-air weather variables, 10-m zonal wind, and 2-m temperature in the East Asian monsoon region. The indication is that a single-physics suite combining SPP, SPPT, and SKEB may be an appropriate alternative to a multiphysics suite. This finding lays a foundation for the development and design of future regional and global ensembles.
机译:为了更全面地解决东亚季风区的模型不确定性,一个物理套件,其中每个集合成员使用与控制成员相同的物理参数化与多个随机方案组合使用,以调查多积极的将不同随机方案结合在一起的方案可以是多麦体验套件的替代方案,其中每个集合构件使用不同的一组物理参数化(例如,积云,边界层,表面层,微妙和短波和长波辐射)。为此目的,对中国夏季季风月进行两项实验:一个带有多体套房,另一个具有多种物理套件,结合多层方案。应用了三种随机方案:随机扰动的参数化(SPP)方案,包括在微微物理学,对流,边界层和表面层参数化方案中的时间上和空间不同的扰动;随机扰动的参数化倾向(SPPT)方案;和随机动能反向散射(SKEB)方案。将三种随机方案的组合与全球和区域同化和预测增强系统 - 区域集合预测系统中的多体套件进行比较,水平网格间距为15公里。验证结果表明,整体而言,结合SPP,SPPT和SKE的单体物理套件优于多麦体验套件,对大型空气变量,10米Zonal风和2米温度的验证进行了降水验证和验证亚洲季风地区。该指示是单个物理套件组合SPP,SPPT和SKEB可以是多体套房的适当替代品。这一发现为未来区域和全球合奏的开发和设计提供了基础。

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