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开发下一代气候系统模型:挑战与成就

Developing the next-generation climate system models: challenges and achievements.

作者信息

Slingo Julia, Bates Kevin, Nikiforakis Nikos, Piggott Matthew, Roberts Malcolm, Shaffrey Len, Stevens Ian, Vidale Pier Luigi, Weller Hilary

机构信息

NCAS-Climate, Walker Institute for Climate Research, University of Reading, Reading RG6 6AH, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2009 Mar 13;367(1890):815-31. doi: 10.1098/rsta.2008.0207.

Abstract

Although climate models have been improving in accuracy and efficiency over the past few decades, it now seems that these incremental improvements may be slowing. As tera/petascale computing becomes massively parallel, our legacy codes are less suitable, and even with the increased resolution that we are now beginning to use, these models cannot represent the multiscale nature of the climate system. This paper argues that it may be time to reconsider the use of adaptive mesh refinement for weather and climate forecasting in order to achieve good scaling and representation of the wide range of spatial scales in the atmosphere and ocean. Furthermore, the challenge of introducing living organisms and human responses into climate system models is only just beginning to be tackled. We do not yet have a clear framework in which to approach the problem, but it is likely to cover such a huge number of different scales and processes that radically different methods may have to be considered. The challenges of multiscale modelling and petascale computing provide an opportunity to consider a fresh approach to numerical modelling of the climate (or Earth) system, which takes advantage of the computational fluid dynamics developments in other fields and brings new perspectives on how to incorporate Earth system processes. This paper reviews some of the current issues in climate (and, by implication, Earth) system modelling, and asks the question whether a new generation of models is needed to tackle these problems.

摘要

尽管在过去几十年里气候模型在准确性和效率方面一直在改进,但现在看来这些渐进式改进可能正在放缓。随着万亿次/千万亿次计算变得大规模并行,我们传统的代码变得不太适用,而且即使我们现在开始使用更高的分辨率,这些模型仍无法体现气候系统的多尺度特性。本文认为,或许是时候重新考虑在天气和气候预测中使用自适应网格加密技术了,以便在大气和海洋中实现良好的扩展性并呈现广泛的空间尺度。此外,将生物和人类应对措施纳入气候系统模型的挑战才刚刚开始得到解决。我们尚未有一个清晰的框架来处理这个问题,但它可能涵盖如此众多不同的尺度和过程,以至于可能不得不考虑截然不同的方法。多尺度建模和千万亿次计算的挑战提供了一个机会,来考虑一种全新的气候(或地球)系统数值建模方法,该方法利用其他领域计算流体动力学的发展成果,并为如何纳入地球系统过程带来新的视角。本文回顾了气候(以及隐含的地球)系统建模中的一些当前问题,并提出是否需要新一代模型来解决这些问题。

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