Effect of weight on dynamic ropes’ responses in indoor climbing

Anatolij Nikonov, Marko Nagode, Jernej Klemenc, Igor Emri
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Abstract

The experimental-numerical-analytical methodology, based on a simple non-standard falling weight experiment, was used to investigate the influence of weight on climbing ropes’ response. Analysis of the impact force, deformation of rope, dissipated and retrieved energy, and maximum deceleration showed that the weight of the climber significantly affects all the examined physical quantities and, consequently, climbers’ safety. Smaller falling mass generates smaller maximum force, dissipates less energy, and generates smaller retrieved energy that propels climbers in the opposite vertical direction. However, maximum deceleration, considered to be one of the most important safety indicators, exhibits non-monotonic dependence on weight. In indoor climbing, these results might aid instructors in introducing measures to help in the traceability of the use of ropes regarding climbers’ weight.
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重量对室内攀岩动态绳索反应的影响
在简单的非标准重物坠落实验基础上,采用实验-数值-分析方法研究了重量对攀岩绳索反应的影响。对冲击力、绳索变形、耗散和回收的能量以及最大减速度的分析表明,攀岩者的重量对所有考察的物理量都有显著影响,从而影响攀岩者的安全。较小的坠落质量产生的最大力较小,耗散的能量较少,产生的回收能量也较小,从而将攀岩者推向相反的垂直方向。然而,被认为是最重要的安全指标之一的最大减速度却与重量呈现非单调依赖关系。在室内攀岩运动中,这些结果可能有助于指导员采取措施,帮助追踪攀岩者体重方面的绳索使用情况。
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来源期刊
CiteScore
3.50
自引率
20.00%
发文量
51
审稿时长
>12 weeks
期刊介绍: The Journal of Sports Engineering and Technology covers the development of novel sports apparel, footwear, and equipment; and the materials, instrumentation, and processes that make advances in sports possible.
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