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Replicability of the EC-Earth3 Earth system model under a change in computing environment

机译:EC-earch3地球系统模型在计算环境变化下的可复制性

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Most Earth system models (ESMs) are running under different high-performance computing (HPC) environments. This has several advantages, from allowing different groups to work with the same tool in parallel to leveraging the burden of ensemble climate simulations, but it also offers alternative solutions in the case of shutdown (expected or not) of any of the environments. However, for obvious scientific reasons, it is critical to ensure that ESMs provide identical results under changes in computing environment. While strict bit-for-bit reproducibility is not always guaranteed with ESMs, it is desirable that results obtained under one computing environment are at least statistically indistinguishable from those obtained under another environment, which we term a “replicability” condition following the metrology nomenclature. Here, we develop a?protocol to assess the replicability of the EC-Earth ESM. Using two versions of EC-Earth, we present one case of non-replicability and one case of replicability. The non-replicable case occurs with the older version of the model and likely finds its origin in the treatment of river runoff along Antarctic coasts. By contrast, the more recent version of the model provides replicable results. The methodology presented here has been adopted as a?standard test by the EC-Earth consortium (27 institutions in Europe) to evaluate the replicability of any new model version across platforms, including for CMIP6 experiments. To a?larger extent, it can be used to assess whether other ESMs can safely be ported from one HPC environment to another for studying climate-related questions. Our results and experience with this work suggest that the default assumption should be that ESMs are not replicable under changes in the HPC environment, until proven otherwise.
机译:大多数地球系统模型(ESMS)在不同的高性能计算(HPC)环境下运行。这具有几个优点,允许不同的组与相同的工具并行使用,以利用集合气候模拟的负担,但它还提供了在任何环境的关机(预期与否)的情况下提供替代解决方案。然而,出于明显的科学原因,确保ESMS在计算环境的变化下提供相同的结果至关重要。虽然具有ESM的严格比特比特再重复性并不总是保证,但是希望在一个计算环境下获得的结果是至少与在另一个环境下获得的那些统计上毫无核心的,我们在计量命令之后术语术语是“可重量的”条件。在这里,我们开发了一个协议,以评估EC-AR地球ESM的可复制性。使用两种版本的EC地球,我们展示了一种不可复制的案例和一种可重复性的情况。不可复制的案例发生在旧版本的模型中,并且可能发现其在沿南极海岸的河流径流处理中的起源。相比之下,最近的模型版本提供可复制的结果。这里呈现的方法是由EC-Charm Consortium(欧洲27个机构)的标准测试,以评估任何新型模型版本的可复制性,包括CMIP6实验。达到更大的范围,它可以用于评估其他ESM是否可以将其他ESMS安全地从一个HPC环境移植到另一个问题中,以便研究与其他有关的问题。我们的结果和经验表明,默认假设应该是在HPC环境的变化下无法复制ESM,直到否则。

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