Antarctic Water Masses and Ice Shelves: Visualizing the Physics

Antarctic Water Masses and Ice Shelves: Visualizing the Physics
复制标题

南极水团和冰架:物理可视化

DOI:
10.1109/mcg.2020.3044228
复制
发表时间:
2021
影响因子:
1.8
通讯作者:
Potel, Mike
Potel, Mike
中科院分区:
计算机科学4区
文献类型:
--
作者:
Abram, Greg;Samsel, Francesca;Petersen, Mark R.;Asay-Davis, Xylar;Comeau, Darin;Price, Stephen F.;Potel, Mike

文献摘要

参考文献

相似文献

全球气候物理学的高分辨率模拟使我们能够模拟气候在各种未来情景下可能发生的变化。这种模拟产生了大量的信息和密集的数据集。如果串联询问,这些数据集可以通过揭示大气,海洋和极地冰的多种相互关联的特性,提供有关地球许多综合系统的整体,重要信息,这些特性由三维空间中的真实地形构成,因为它们随时间而变化。为了实现这一目标,气候科学家与计算机科学家和一位艺术家合作,开发了一种技术,使科学家能够看到这些关系。海洋水的性质对南极冰架的影响说明了这种分析在了解陆地冰融化速率和海平面上升方面的好处。
High-resolution simulation of global climate physics enables us to model how the climate may change under a variety of future scenarios. Such simulations produce vast amounts of information and dense datasets. If interrogated in tandem, these datasets can provide holistic, vital information on Earth’s many integrated systems by revealing the manifold interrelated properties of the atmosphere, ocean, and polar ice, framed by real-world terrain in three-dimensional space as they vary over time. To accomplish this, climate scientists have joined with computer scientists and an artist to develop techniques enabling scientists to see these relationships. The impact of ocean water properties on Antarctic ice shelves illustrates the benefit of this analysis in understanding land ice melt rates and thus sea-level rise.
利用 MPAS 和年际 CORE-II 强迫对 E3SM 的海洋和海冰气候进行评估
DOI: --
发表时间: 2019
影响因子: 6.8
作者:
M. Petersen;X. Asay;A. Berres;Qingshan Chen;N. Feige;M. Hoffman;D. Jacobsen;Philip W. Jones;M. Maltrud;S. Price;T. Ringler;G. Streletz;A. Turner;Luke P. van Roekel;M. Veneziani;J. Wolfe;P. Wolfram;J. Woodring
通讯作者: J. Woodring