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Ongoing Breakthroughs in Convective Parameterization
DOI:10.1007/s40641-019-00127-w.png)
摘要
En 中文
Purpose of Review While the increase of computer power mobilizes a part of the atmospheric modeling community toward models with explicit convection or based on machine learning, we review the part of the literature dedicated to convective parameterization development for large-scale forecast and climate models. Recent Findings Many developments are underway to overcome endemic limitations of traditional convective parameterizations, either in unified or multiobject frameworks: scale-aware and stochastic approaches, new prognostic equations or representations of new components such as cold pools. Understanding their impact on the emergent properties of a model remains challenging, due to subsequent tuning of parameters and the limited understanding given by traditional metrics. Summary Further effort still needs to be dedicated to the representation of the life cycle of convective systems, in particular their mesoscale organization and associated cloud cover. The development of more process-oriented metrics based on new observations is also needed to help quantify model improvement and better understand the mechanisms of climate change.
Keyword:
Convective parameterizations for large-scale models
Stochastic approaches
Convective memory
Mesoscale circulation
Cold pools
Process-oriented metrics
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期刊
IF:
10.3
论文数:
202
被引数:
2.5K
机构
引用论文
Convective and large-scale mass flux profiles over tropical oceans determined from synergistic analysis of a suite of satellite observations通过对一系列卫星观测的协同分析确定的热带海洋上的对流和大规模质量通量剖面

