A Didactic Procedure to Solve the Equation of Steady-Static Response in Suspended Cables

Author:

Agüero-Rubio JoséORCID,López-Martínez JavierORCID,Gómez-Galán Marta,Callejón-Ferre Ángel-JesúsORCID

Abstract

Students in the electrical branch of the short-cycle tertiary education program acquire developmental and design skills for low voltage transmission power lines. Aerial power line design requires mathematical tools not covered well enough in the curricula. Designing suspension cables requires the use of a Taylor series and integral calculation to obtain the parabola’s arc length. Moreover, it requires iterative procedures, such as the Newton–Raphson method, to solve the third-order equation of the steady-static response. The aim of this work is to solve the steady-static response equation for suspended cables using simple calculation tools. For this purpose, the influence of the horizontal component of the cable tension on its curvature was decoupled from the cable’s self-weight, which was responsible for the tension’s vertical component. To this end, we analyzed the laying and operation of the suspended cables by defining three phases (i.e., stressing, lifting, and operation). The phenomena that occurred in each phase were analyzed, as was their manifestation in the cable model. Herein, we developed and validated the solution of the steady-static response equation in suspended cables using simple equations supported with intuitive graphics. The best results of the proposed calculation procedure were obtained in conditions of large temperature variations.

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference45 articles.

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2. International Standard Classification of Education (ISCED) 2011

3. The problem of conductor sagging on overhead transmission lines;Boyse;J. Inst. Electr. Eng. Part II Power Eng.,1944

4. Incremental Method for Sag-Tension Calculations

5. Practical design of transmission line tensions

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