TOWARDS ADJOINT-BASED INVERSION OF THE LAME PARAMETER FIELD FOR SLENDER STRUCTURES WITH CANTILEVER LOADING

被引:0
|
作者
Fatehiboroujeni, Soheil [1 ]
Petra, Noemi [2 ]
Goyal, Sachin [1 ]
机构
[1] Univ Calif, Dept Mech Engn, Merced, CA 95343 USA
[2] Univ Calif, Appl Math, Merced, CA 95343 USA
来源
PROCEEDINGS OF THE ASME INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, 2016, VOL 8 | 2016年
关键词
FLEXURAL RIGIDITY; ROD MODEL; DNA; ELASTICITY; MECHANICS; DYNAMICS; MICROTUBULES;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Continuum models of slender structures are effective in simulating the mechanics of nano-scale filaments. However, the accuracy of these simulations strictly depends on the knowledge of the constitutive laws that may in general be non-homogeneous. It necessitates an inverse problem framework that can leverage the data provided by physical experiments and molecular dynamics simulations to estimate the unknown parameters in the constitutive law. In this paper, we formulate a simple but representative inverse problem as a nonlinear least-squares optimization problem whose cost functional is the misfit between synthetic observations of a cantilever displacement field and model predictions. A Tikhonov regularization term is added to the cost functional to render the problem well-posed and account for observational error. We solve this optimization problem with an adjoint-based inexact Newton-conjugate gradient method. We show that the reconstruction of the Lame parameter field converges to the exact coefficient as the observation error decreases.
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页数:9
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