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首页> 外文期刊>SIAM Journal on Scientific Computing >Achieving textbook multigrid efficiency for hydrostatic ice sheet flow
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Achieving textbook multigrid efficiency for hydrostatic ice sheet flow

机译:实现教科书的多网格效率以实现静水冰盖流动

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摘要

The hydrostatic equations for ice sheet flow offer improved fidelity compared with the shallow ice approximation and shallow stream approximation popular in today's ice sheet models. Nevertheless, they present a serious bottleneck because they require the solution of a three-dimensional (3D) nonlinear system, as opposed to the two-dimensional system present in the shallow stream approximation. This 3D system is posed on high-aspect domains with strong anisotropy and variation in coefficients, making it expensive to solve with current methods. This paper presents a Newton-Krylov multigrid solver for the hydrostatic equations that demonstrates textbook multigrid efficiency (an order of magnitude reduction in residual per iteration and solution of the fine-level system at a small multiple of the cost of a residual evaluation). Scalability on Blue Gene/P is demonstrated, and the method is compared to various algebraic methods that are in use or have been proposed as viable approaches.
机译:与当今冰盖模型中流行的浅冰近似和浅流近似相比,用于冰盖流动的流体静力学方程式具有更高的保真度。尽管如此,它们还是一个严重的瓶颈,因为它们需要求解三维(3D)非线性系统,而不是浅流近似中存在的二维系统。该3D系统位于具有高各向异性和系数变化的高纵横比区域上,因此使用当前方法进行求解非常昂贵。本文针对流体静力学方程式提出了一种Newton-Krylov多重网格求解器,该求解器演示了教科书的多重网格效率(每次迭代的残差减少量和精细级系统求解的数量级降低,残差评估成本很小)。证明了Blue Gene / P的可扩展性,并将该方法与正在使用或已提议作为可行方法的各种代数方法进行了比较。

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