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Mixed-precision arithmetic in the ENDGame dynamical core of the Unified Model, a numerical weather prediction and climate model code

机译:混合精度算术在统一模型的最终动态核心中,数值天气预报和气候模型代码

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摘要

The Met Office's weather and climate simulation code the Unified Model is used for both operational Numerical Weather Prediction and Climate modelling. The computational performance of the model running on parallel supercomputers is a key consideration. A Krylov sub-space solver is employed to solve the equations of the dynamical core of the model, known as ENDGame. These describe the evolution of the Earth's atmosphere. Typically, 64-bit precision is used throughout weather and climate applications. This work presents a mixed-precision implementation of the solver, the beneficial effect on run-time and the impact on solver convergence. The complex interplay of errors arising from accumulated round-off in floating-point arithmetic and other numerical effects is discussed. A careful analysis is required. The mixed-precision solver is now employed in the operational forecast to satisfy run-time constraints without compromising the accuracy of the solution. Crown Copyright (C) 2019 Published by Elsevier B.V. All rights reserved.
机译:梅特办公室的天气和气候模拟代码统一模型用于运营数值天气预报和气候建模。并行超级计算机上运行的模型的计算性能是一个关键考虑因素。采用Krylov子空间求解器来解决模型的动态核心的方程,称为endgame。这些描述了地球大气的演变。通常,在天气和气候应用中使用64位精度。这项工作提出了求解器的混合精确实现,对运行时间的有益效果和对求解器收敛的影响。讨论了从浮点算术和其他数值效果中累积循环产生的误差的复杂相互作用。需要仔细分析。混合精密求解器现在在操作预测中采用,以满足运行时约束而不会影响解决方案的准确性。皇家版权(c)2019由elsevier b.v出版。保留所有权利。

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