Urgent Tsunami Computing

F. Løvholt, S. Lorito, Jorge Macías Sánchez, M. Volpe, J. Selva, S. Gibbons
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引用次数: 17

Abstract

Tsunamis pose a hazard that may strike a coastal population within a short amount of time. To effectively forecast and warn for tsunamis, extremely fast simulations are needed. However, until recently such urgent tsunami simulations have been infeasible in the context of early warning and even for high-resolution rapid post-event assessment. The implementation of efficient tsunami numerical codes using Graphical Processing Units (GPUs) has now allowed much faster simulations, which have opened a new avenue for carrying out simulations Faster Than Real Time (FTRT). This paper discusses the need for urgent computing in computational tsunami science, and presents workflows for two applications, namely FTRT itself and Probabilistic Tsunami Forecasting (PTF). PTF relies on a very high number of FTRT simulations addressing forecasting uncertainty, whose full quantification will be made more and more at reach with the advent of exascale computing resources.
紧急海啸计算
海啸可能会在短时间内袭击沿海地区的居民。为了有效地预报和预警海啸,需要极快的模拟。然而,直到最近,这种紧急的海啸模拟在早期预警甚至高分辨率的事后快速评估方面都是不可行的。使用图形处理单元(gpu)实现高效的海啸数值代码现在允许更快的模拟,这为进行比实时(FTRT)更快的模拟开辟了新的途径。本文讨论了计算海啸科学对紧急计算的需求,并介绍了两种应用程序的工作流程,即FTRT本身和概率海啸预报(PTF)。PTF依赖于大量的FTRT模拟来解决预测的不确定性,随着百亿亿次计算资源的出现,其完全量化将越来越容易实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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