首页> 外文期刊>Journal of Computational Physics >The effects of plastic waves on the numerical convergence of the viscous-plastic and elastic-viscous-plastic sea-ice models
【24h】

The effects of plastic waves on the numerical convergence of the viscous-plastic and elastic-viscous-plastic sea-ice models

机译:塑料波对粘性塑料和弹性粘性塑料海冰模型数值趋同的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The plastic wave speed is derived from the linearized 1-D version of the widely used viscous-plastic (VP) and elastic-viscous-plastic (EVP) sea-ice models. Courant-Friedrichs-Lewy (CFL) conditions are derived using the propagation speed of the wave. 1-D numerical experiments of the VP, EVP and EVP* models successfully recreate a reference solution when the CFL conditions are satisfied, in agreement with the theory presented. The IMplicit-EXplicit (IMEX) method is shown to effectively alleviate the plastic wave CFL constraint on the timestep in the implicitly solved VP model in both 1-D and 2-D. In 2-D, the EVP and EVP* models show first order error in the simulated velocity field when the plastic wave is not resolved. EVP simulations are performed with various advective timestep, number of subcycles, and elastic-wave damping timescales. It is found that increasing the number of subcycles beyond that needed to resolve the elastic wave does not improve the quality of the solution. It is found that reducing the elastic wave damping timescale reduces the spatial extent of first order errors cause by the unresolved plastic wave. Reducing the advective timestep so that the plastic wave is resolved also reduces the velocity error in terms of magnitude and spatial extent. However, the parameter set required for convergence to within the error bars of satellite (RGPS) deformation fields is impractical for use in climate model simulations. The behavior of the EVP* method is analogous to that of the EVP method except that it is not possible to reduce the damping timescale with alpha= beta. (C) 2017 Elsevier Inc. All rights reserved.
机译:塑料波速源自广泛使用的粘性塑料(VP)和弹性粘性塑料(EVP)海冰模型的线性化1-D版本。使用波浪的传播速度导出扶手 - Friedrichs-Lewy(CFL)条件。 vp,evp和evp *模型的1-d数值实验成功地重新创建了CFL条件时的参考解决方案,同时达成了该理论。示出了隐式显式(IMEX)方法,以在1-D和2-D中有效地减轻在隐式溶解的VP模型中的时间步骤中的塑料波CFL约束。在2-D中,EVP和EVP *模型在无法解决塑料波时,模拟速度场中的第一阶误差显示。通过各种平流时间,亚单次数和弹性波阻尼时间尺寸进行EVP模拟。结果发现,在解析弹性波的情况下,增加超出的亚循环的数量不会提高解决方案的质量。结果发现,通过未解决的塑料波降低弹性波阻尼时间尺寸降低了第一阶误差的空间程度。减少前进的时间步骤,使得塑料波被解决也在幅度和空间范围内降低了速度误差。然而,在卫星(RGPS)变形字段的误差条内收敛所需的参数集对于气候模型模拟是不切实际的。 EVP *方法的行为类似于EVP方法的行为,除了不可能将阻尼时间段与Alpha = beta减少。 (c)2017年Elsevier Inc.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号