Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Methods of analytical mechanics for exact Cosserat elastic rod dynamics

View through CrossRef
Thin elastic rod mechanics with background of a kind of single molecule such as DNA and other engineering object has entered into a new developing stage. In this paper the vector method of exact Cosserat elastic rod dynamics is transformed into the form of analytical mechanics with the arc length and time as its independent variables, whose aims are to find new tools for studying rod mechanics and to develop the area of applications of classical analytical mechanics. Based on the plane cross-section assumption, a cross-section of the rod is taken as an object. Basic formulas on deformation and motion of the section are given. After defining virtual displacement of a cross-section and its equivalent variation rule, a differential variational principle such as d’Alembert-Lagrange one is established, from which dynamical equations of thin elastic rod are expressed as Lagrange equations or Nielsen equations under the condition of linear elasticity of the rod. For the rod statics when there exist conserved quantities, Lagrange equation which makes use of these quantities is derived and its first integral is discussed. Finally integral variational principle is derived from differential one, and expressed as Hamilton principle under the condition of linear elasticity. Hamilton canonical equations in phase space with 3×6 dimensions are also derived. All of the results have formed the method of analytical mechanics of dynamics of an exact Cosserat elastic rod, so that the further problems such as symmetry and conserved quantities, and numerical simulation of the rod dynamics may be further studied.
Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences
Title: Methods of analytical mechanics for exact Cosserat elastic rod dynamics
Description:
Thin elastic rod mechanics with background of a kind of single molecule such as DNA and other engineering object has entered into a new developing stage.
In this paper the vector method of exact Cosserat elastic rod dynamics is transformed into the form of analytical mechanics with the arc length and time as its independent variables, whose aims are to find new tools for studying rod mechanics and to develop the area of applications of classical analytical mechanics.
Based on the plane cross-section assumption, a cross-section of the rod is taken as an object.
Basic formulas on deformation and motion of the section are given.
After defining virtual displacement of a cross-section and its equivalent variation rule, a differential variational principle such as d’Alembert-Lagrange one is established, from which dynamical equations of thin elastic rod are expressed as Lagrange equations or Nielsen equations under the condition of linear elasticity of the rod.
For the rod statics when there exist conserved quantities, Lagrange equation which makes use of these quantities is derived and its first integral is discussed.
Finally integral variational principle is derived from differential one, and expressed as Hamilton principle under the condition of linear elasticity.
Hamilton canonical equations in phase space with 3×6 dimensions are also derived.
All of the results have formed the method of analytical mechanics of dynamics of an exact Cosserat elastic rod, so that the further problems such as symmetry and conserved quantities, and numerical simulation of the rod dynamics may be further studied.

Related Results

Elastic Tubes: Modeling Elastic Deformation of Hollow Tubes
Elastic Tubes: Modeling Elastic Deformation of Hollow Tubes
Abstract The Cosserat theory of elastic rods has been used in a wide range of application domains to model and simulate the elastic deformation of thin rods. It is physically accur...
Ribbon Rod - Improvement in Sucker Rod Technology Shows Need to Re-Evaluate Current Artificial Lift Installations
Ribbon Rod - Improvement in Sucker Rod Technology Shows Need to Re-Evaluate Current Artificial Lift Installations
Abstract This study describes ribbon rod as a continuous graphite composite material that can be currently used to partially replace a conventional sucker rod str...
Rod bipolar cells in the macaque monkey retina: immunoreactivity and connectivity
Rod bipolar cells in the macaque monkey retina: immunoreactivity and connectivity
Rod bipolar cells in the macaque monkey retina were labeled by three antibodies: an antibody against the alpha- and beta-subspecies of protein kinase C (PKC), a polyclonal antiseru...
Effects of Criterion Values on Estimation of the Radius of Drainage and Stabilization Time
Effects of Criterion Values on Estimation of the Radius of Drainage and Stabilization Time
Abstract After a well starts flowing, a larger portion of the reservoir contributes to production. At any given time, the radius of the portion of the reservoir t...
Rod Lengthening With the Magnetically Controlled Growing Rod
Rod Lengthening With the Magnetically Controlled Growing Rod
Study Design. Prospective study. Objective. To identify the factors that are associated with rod slippage and to study the...
Effects of Criterion Values on Estimation of the Radius of Drainage and Stabilization Time
Effects of Criterion Values on Estimation of the Radius of Drainage and Stabilization Time
Abstract After a well starts flowing, a larger and larger portion of the reservoir contributes to production. At any given time, the radius of the portion of the ...
Sucker Rod String Rod Guide Service Life Estimation
Sucker Rod String Rod Guide Service Life Estimation
Abstract The sucker rod string is equipped with rod guides that help to stabilize the sucker rod string and to prevent the contact between rods and tubing, which wou...

Back to Top