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Extended BACOLI: Solving One-Dimensional Multiscale Parabolic PDE Systems With Error Control

机译:扩展Bacoli:解决具有错误控制的一维MultiScale抛物线PDE系统

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摘要

BACOLI is a Fortran software package for solving one-dimensional parabolic partial differential equations (PDEs) with separated boundary conditions by B-spline adaptive collocation methods. A distinguishing feature of BACOLI is its ability to estimate and control error and correspondingly adapt meshes in both space and time. Manymodels of scientific interest, however, can be formulated asmultiscale parabolic PDE systems, that is, models that couple a system of parabolic PDEs describing dynamics on a global scale with a system of ordinary differential equations describing dynamics on a local scale. This article describes the Fortran software eBACOLI, the extension of BACOLI to solve such multiscale models. The performance of the extended software is demonstrated to be statistically equivalent to the original for purely parabolic PDE systems. Results from eBACOLI are given for various multiscale models from the extended problem class considered.
机译:Bacoli是一种用于求解一维抛物线局部微分方程(PDE)的Fortran软件包,通过B样条自适应搭配方法用分离的边界条件求解。 Bacoli的一个显着特征是其估计和控制误差和相应地适应两个空间和时间的网格。然而,科学兴趣的许多微小统一可以制定抛物板PADE系统,即抛抛抛抛光PDE系统的模型,其描述了在全球规模上描述动态的普通尺度上的动态,描述了本地规模的动态。本文介绍了Fortran软件Ebacoli,Bacoli的延伸来解决此类多尺度模型。扩展软件的性能被证明在统计上等同于纯抛物线PDE系统的原件。来自考虑的扩展问题类的各种多尺度模型给出了Ebacoli的结果。

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