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A comparative analysis of Lagrange multiplier and penalty approaches for modelling fluid-structure interaction

机译:拉格朗日乘法机和惩罚方法的比较分析,用于建模流体结构相互作用

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Purpose When simulating fluid-structure interaction (FSI), it is often essential that the no-slip condition is accurately enforced at the wetted boundary of the structure. This paper aims to evaluate the relative strengths and limitations of the penalty and Lagrange multiplier methods, within the context of modelling FSI, through a comparative analysis. Design/methodology/approach In the immersed boundary method, the no-slip condition is typically imposed by augmenting the governing equations of the fluid with an artificial body force. The relative accuracy and computational time of the penalty and Lagrange multiplier formulations of this body force are evaluated by using each to solve three test problems, namely, flow through a channel, the harmonic motion of a cylinder through a stationary fluid and the vortex-induced vibration (VIV) of a cylinder. Findings The Lagrange multiplier formulation provided an accurate solution, especially when enforcing the no-slip condition, and was robust as it did not require "tuning" of problem specific parameters. However, these benefits came at a higher computational cost relative to the penalty formulation. The penalty formulation achieved similar levels of accuracy to the Lagrange multiplier formulation, but only if the appropriate penalty factor was selected, which was difficult to determine a priori. Originality/value Both the Lagrange multiplier and penalty formulations of the immersed boundary method are prominent in the literature. A systematic quantitative comparison of these two methods is presented within the same computational environment. A novel application of the Lagrange multiplier method to the modelling of VIV is also provided.
机译:目的在模拟流体结构相互作用(FSI)时,通常必须在结构的湿润边界处精确地强制执行无滑移条件。本文旨在通过比较分析评估在建模FSI的背景下的惩罚和拉格朗日乘数方法的相对优势和局限性。设计/方法/方法在浸没边界法中,通常通过用人造体力增强流体的控制方程来施加无滑移条件。通过使用各自来解决三个测试问题来评估该体力的惩罚和拉格朗日乘法器配方的相对精度和计算时间,即流过通道,通过静止流体和涡旋诱导的圆柱体的谐波运动圆柱体的振动(VIV)。调查结果Lagrange乘法器配方提供了准确的解决方案,特别是在强制执行无滑移条件时,并且由于它不需要“调谐”特定参数而变得坚固。然而,这些益处以罚款制定的较高的计算成本。罚款制剂对拉格朗日乘法器制剂的准确性相似,但只有选择适当的惩罚因子,这很难确定先验。原始性/值浸没边界法的拉格朗日乘法器和罚款配方在文献中突出。对这两种方法的系统定量比较呈现在相同的计算环境中。还提供了LAGRANG乘法器方法对VIV建模的新颖应用。

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