2014Water Resources and PowerRequires access

Simulation of Dynamic Tension Stringing Based on ADAMS

JU Yanzhon

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Abstract

The traditional tension stringing engineering calculations can not reflect the real-time dynamic tension changes of overhead conductor and traction rope.By using the secondary development in ADAMS,tension stringing simulation system model was built.Traction rope and overhead conductor were completed the dynamic exhibition process by action of the tension,traction and gravity jointly.And then simulation speed optimization was achieved by simplified model and script simulation control.Finally,the validity and reliability of the model was proved with theoretical calculation.Furthermore,the dynamic characteristics of overhead conductor and traction rope were analyzed.The results can provide reference for engineering construction.

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What this paper is about

The traditional tension stringing engineering calculations can not reflect the real-time dynamic tension changes of overhead conductor and traction rope.By using the secondary development in ADAMS,tension stringing simulation system model was built.Traction rope and overhead conductor were completed the dynamic exhibition process by action of the tension,traction and gravity jointly.And then simulation speed optimization was achieved by simplified model and script simulation control.Finally,the validity and reliability of the model was proved with theoretical calculation.Furthermore,the dynamic characteristics of overhead conductor and traction rope were analyzed.The results can provide reference for engineering construction.

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Available abstract

The traditional tension stringing engineering calculations can not reflect the real-time dynamic tension changes of overhead conductor and traction rope.By using the secondary development in ADAMS,tension stringing simulation system model was built.Traction rope and overhead conductor were completed the dynamic exhibition process by action of the tension,traction and gravity jointly.And then simulation speed optimization was achieved by simplified model and script simulation control.Finally,the validity and reliability of the model was proved with theoretical calculation.Furthermore,the dynamic characteristics of overhead conductor and traction rope were analyzed.The results can provide reference for engineering construction.

Key concepts: Traction (geology), Rope, Conductor, Tension (geology), Overhead (engineering), Dynamic simulation, Engineering, Structural engineering

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