Finding the strongest stable massless column with a follower load and relocatable concentrated masses
Autor: | Oleg N. Kirillov, Michael L. Overton |
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Rok vydání: | 2021 |
Předmět: |
Optimization problem
FOS: Physical sciences Dynamical Systems (math.DS) Physics - Classical Physics Interval (mathematics) 01 natural sciences Stability (probability) 010305 fluids & plasmas 0103 physical sciences FOS: Mathematics Applied mathematics Mathematics - Numerical Analysis Mathematics - Dynamical Systems 010306 general physics Divergence (statistics) Mathematics - Optimization and Control Mathematics G100 Conjecture Applied Mathematics Mechanical Engineering Classical Physics (physics.class-ph) Numerical Analysis (math.NA) Condensed Matter Physics Constraint (information theory) Massless particle Optimization and Control (math.OC) Mechanics of Materials Flutter |
Zdroj: | The Quarterly Journal of Mechanics and Applied Mathematics. 74:223-250 |
ISSN: | 1464-3855 0033-5614 |
DOI: | 10.1093/qjmam/hbab005 |
Popis: | Summary We consider the problem of optimal placement of concentrated masses along a massless elastic column that is clamped at one end and loaded by a nonconservative follower force at the free end. The goal is to find the largest possible interval such that the variation in the loading parameter within this interval preserves stability of the structure. The stability constraint is nonconvex and nonsmooth, making the optimization problem quite challenging. We give a detailed analytical treatment for the case of two masses, arguing that the optimal parameter configuration approaches the flutter and divergence boundaries of the stability region simultaneously. Furthermore, we conjecture that this property holds for any number of masses, which in turn suggests a simple formula for the maximal load interval for $n$ masses. This conjecture is strongly supported by extensive computational results, obtained using the recently developed open-source software package granso (GRadient-based Algorithm for Non-Smooth Optimization) to maximize the load interval subject to an appropriate formulation of the nonsmooth stability constraint. We hope that our work will provide a foundation for new approaches to classical long-standing problems of stability optimization for nonconservative elastic systems arising in civil and mechanical engineering. |
Databáze: | OpenAIRE |
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