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Multi-grid algorithm for passive tracer transport in the NEMO ocean circulation model: a case study with the NEMO OGCM (version 3.6)

机译:Nemo海洋循环模型中被动示踪传输的多网格算法 - 以Nemo ogcm为例(版本3.6)

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Ocean biogeochemical models are key tools for both scientific and operational applications. Nevertheless the cost of these models is often expensive because of the large number of biogeochemical tracers. This has motivated the development of multi-grid approaches where ocean dynamics and tracer transport are computed on grids of different spatial resolution. However, existing multi-grid approaches to tracer transport in ocean modelling do not allow the computation of ocean dynamics and tracer transport simultaneously. This paper describes a new multi-grid approach developed for accelerating the computation of passive tracer transport in the Nucleus for European Modelling of the Ocean (NEMO) ocean circulation model. In practice, passive tracer transport is computed at runtime on a grid with coarser spatial resolution than the hydrodynamics, which reduces the CPU cost of computing the evolution of tracers. We describe the multi-grid algorithm, its practical implementation in the NEMO ocean model, and discuss its performance on the basis of a series of sensitivity experiments with global ocean model configurations. Our experiments confirm that the spatial resolution of hydrodynamical fields can be coarsened by a factor of 3 in both horizontal directions without significantly affecting the resolved passive tracer fields. Overall, the proposed algorithm yields a reduction by a factor of 7 of the overhead associated with running a full biogeochemical model like PISCES (with 24 passive tracers). Propositions for further reducing this cost without affecting the resolved solution are discussed.
机译:海洋生物地球化学模型是科学和运营应用的关键工具。然而,由于大量的生物地球化学示踪剂,这些模型的成本通常是昂贵的。这激发了在不同空间分辨率的网格上计算海洋动力学和示踪传输的多网格方法的发展。然而,海洋建模中的示踪传输的现有多网格方法不允许同时计算海洋动力学和示踪剂。本文介绍了一种新的多电网方法,用于加速欧洲(NEMO)海洋循环模型中欧洲建模中的被动示踪传输计算。在实践中,在具有粗糙空间分辨率的网格上的运行时计算被动示踪传输,而不是流体动力学,这降低了计算示踪剂的进化的CPU成本。我们描述了多电网算法,其在Nemo海洋模型中的实际实现,并根据具有全球海洋模型配置的一系列敏感性实验讨论其性能。我们的实验证实,在水平方向上可以在3个水平方向上略微粗糙,而不会显着影响被解析的被动示踪领域的空间分辨率。总的来说,所提出的算法产生了与双鱼座这样的完整生物地球化学模型相关的开销的70系数的减少,如双鱼座(带有24个被动示踪剂)。讨论了在不影响所解决的解决方案的情况下进一步降低该成本的命题。

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