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Manufactured analytical solutions for isothermal full-Stokes ice sheet models

机译:等温全斯托克斯冰盖模型的制造分析解决方案

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We present the detailed construction of a manufactured analytical solution to time-dependent and steady-state isothermal full-Stokes ice sheet problems. The solutions are constructed for two-dimensional flowline and three-dimensional full-Stokes ice sheet models with variable viscosity. The construction is done by choosing for the specified ice surface and bed a velocity distribution that satisfies both mass conservation and the kinematic boundary conditions. Then a compensatory stress term in the conservation of momentum equations and their boundary conditions is calculated to make the chosen velocity distributions as well as the chosen pressure field into exact solutions. By substituting different ice surface and bed geometry formulas into the derived solution formulas, analytical solutions for different geometries can be constructed. brbr The boundary conditions can be specified as essential Dirichlet conditions or as periodic boundary conditions. By changing a parameter value, the analytical solutions allow investigation of algorithms for a different range of aspect ratios as well as for different, frozen or sliding, basal conditions. The analytical solutions can also be used to estimate the numerical error of the method in the case when the effects of the boundary conditions are eliminated, that is, when the exact solution values are specified as inflow and outflow boundary conditions.
机译:我们介绍了针对时间和稳态等温全斯托克斯冰盖问题的制造分析解决方案的详细结构。该解决方案适用于具有可变粘度的二维流线和三维全斯托克斯冰盖模型。通过为指定的冰面和床层选择既满足质量守恒要求又满足运动学边界条件的速度分布来完成施工。然后计算动量方程及其边界条件守恒中的补偿应力项,以使选定的速度分布以及选定的压力场成为精确解。通过将不同的冰面和床层几何公式代入导出的溶液公式,可以构造出针对不同几何形状的分析溶液。 边界条件可以指定为基本Dirichlet条件或周期性边界条件。通过更改参数值,解析解决方案可以研究不同纵横比范围以及不同,冻结或滑动基础条件的算法。在消除边界条件的影响的情况下,即当确切的解决方案值指定为流入和流出边界条件时,解析解也可以用于估计方法的数值误差。

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