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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >A staggered high-dimensional Proper Generalised Decomposition for coupled magneto-mechanical problems with application to MRI scanners
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A staggered high-dimensional Proper Generalised Decomposition for coupled magneto-mechanical problems with application to MRI scanners

机译:用于耦合磁力机械问题的交错高维适当的分解,应用于MRI扫描仪

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Manufacturing new Magnetic Resonance Imaging (MRI) scanners represents a computational challenge to industry, due to the large variability in material parameters and geometrical configurations that need to be tested during the early design phase. This process can be highly optimised through the employment of user-friendly computational metamodels constructed on the basis of Reduced Order Modelling (ROM) techniques, where high-dimensional parametric offline solutions are obtained, stored and assimilated in order to be efficiently queried in real time. This paper presents a novel Proper Generalised Decomposition (PGD) based metamodel for the analysis of electro-magneto-mechanical interactions in the context of MRI scanner design, with three distinct novelties. First, the paper derives, from scratch, a five-dimensional parametrised offline solution process, expressed in terms of (axisymmetric) cylindrical coordinates, external excitation frequency, electrical conductivity of the embedded shields and strength of the static magnetic field. Second, by exploiting the staggered nature of the coupled problem at hand, an efficient sequential PGD algorithm is derived and compared against a previously published monolithic PGD algorithm. As a third novelty, the paper draws some interesting comparisons against an alternative tailor-made ROM technique, where the electromagnetic equations are solved using a Proper Orthogonal Decomposition model. A series of numerical examples are presented in order to illustrate, motivate and demonstrate the validity and potential of the considered approach, especially in terms of cost MRI. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于在早期设计阶段期间需要测试的材料参数和几何配置,制造新的磁共振成像(MRI)扫描仪代表了工业的计算挑战。通过在基于减少的订单建模(ROM)技术的用户友好的计算元典中,可以高度优化该过程,其中获得了高维参数离线解决方案,存储和同化,以便实时有效地查询。本文介绍了一种新的基于适当的广义分解(PGD)的元模型,用于分析MRI扫描仪设计中的电磁机械相互作用,具有三种不同的新科。首先,纸张从划痕来源的五维参数化离线溶液过程,以(轴对称)圆柱形坐标,外部励磁频率,嵌入式屏蔽的电导率和静态磁场的强度。其次,通过利用手头的耦合问题的交错性质,导出了一种高效的顺序PGD算法,并与先前公布的单片PGD算法进行了比较。作为第三新颖,纸张利用替代的量身定制的ROM技术绘制一些有趣的比较,其中使用适当的正交分解模型来解决电磁方程。提出了一系列数值示例,以说明,激励和展示所考虑方法的有效性和潜力,特别是在成本MRI方面。 (c)2020 Elsevier B.v.保留所有权利。

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