Propagation of Longitudinal Deformation Wave Along a Hoisting Rope Carrying an Intermediate Concentrated Load

Author:

Razdolsky A. G.1

Affiliation:

1. Independent Research Scientist, Ein Gedi St. 2/16, Holon 58506, Israel

Abstract

Motion of the hoisting rope carrying an intermediate concentrated load is described by the one-dimensional wave equation in the region consisting of two sections separated by a moving boundary condition. The system is moved by the driving force acting at the upper cross section of the rope. Position of the intermediate load and consequently the lengths of the rope sections vary in the time depending on the magnitude of driving force. Solution of the wave equation is represented as a sum of integrals with variable limits of integration. The problem is reduced to solving the sequence of ordinary differential equations which describe a motion of the load in the fixed coordinate system and the paths of the rope ends in the moving coordinate system connected with the load. The argument of functions involved in the right-hand side of these equations lag behind the argument of the derivatives in the left-hand side of equations by a short time interval. A description of the unknown functions in a parametric form makes possible to eliminate retarded arguments from the equations. The problem is solved by using a technique of the sequential continuation of solution for time intervals corresponding to propagation of the deformation wave in the opposite directions. A computer program has been developed for solving the problem. Results of the numerical solution are presented in the case that the driving force is a piecewise linear function of time and is discontinuous at the peak point.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference15 articles.

1. Forced Response of Translating Media With Variable Length and Tension: Application to High-Speed Elevators;J. Multi-Body Dyn.,2005

2. Vibration Analysis of Elevator Rope (Forced Vibration of Rope With Time-Varying Length);J. Environ. Eng.,2007

3. Kaczmarczyk, S., Iwankiewicz, R., and Terumichi, Y., 2010, “The Responses of Long Moving Vertical Ropes and Cables Subjected to Dynamic Loading Due to the Host Structure Sway,” Proceedings of the Symposium on the Mechanics of Slender Structure (MoSS 2010), Sebastian, University of Mondragon, Spain, pp. 1–10.

4. Sandilo, S. H., and van Horssen, W. T., 2011, “On Boundary Damping for an Axially Moving Beam and on the Variable Length Induced Vibrations of an Elevator Cable,” Proceedings of the 7th European Nonlinear Dynamics Conference (ENOC 2011), D. Bernardini, G. Rega, and F. Romeo, eds., Rome.

5. Dynamics of a Rope Modeled as a Discrete System With Extensible Members;Comput. Mech.,2009

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