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蹦床动力学特性研究与双跳振动分析。

Investigation into the Trampoline Dynamic Characteristics and Analysis of Double Bounce Vibrations.

机构信息

Faculty of Engineering and Information Technology, University of Technology Sydney, Sydney 2007, Australia.

Mr Trampoline, 966 Dandenong Road, Melbourne 3163, Australia.

出版信息

Sensors (Basel). 2022 Apr 11;22(8):2916. doi: 10.3390/s22082916.

Abstract

Double bounce is an unusual and potentially very hazardous phenomenon that most trampoline users may have experienced, yet few would have really understood how and why it occurs. This paper provides an in-depth investigation into the double bounce. Firstly, the static and dynamic characteristics of a recreational trampoline are analysed theoretically and verified through experiments. Then, based on the developed trampoline dynamic model, double bounce simulation is conducted with two medicine balls released with different time delays. Through simulation, the process of double bounce is presented in detail, which comprehensively reveals how energy is transferred between users during double bounce. Furthermore, the effect of release time delay on double bounce is also presented. Finally, we conducted an experiment which produced similar results to the simulation and validated the reliability of the trampoline dynamic model and double bounce theoretical analysis.

摘要

双重弹跳是一种不寻常且潜在非常危险的现象,大多数蹦床使用者可能都经历过,但很少有人真正理解它是如何以及为何发生的。本文对双重弹跳进行了深入研究。首先,从理论上分析了休闲蹦床的静态和动态特性,并通过实验进行了验证。然后,基于开发的蹦床动力学模型,用两个具有不同时滞的药球进行了双重弹跳模拟。通过模拟,详细展示了双重弹跳的过程,全面揭示了能量在双重弹跳过程中用户之间是如何传递的。此外,还展示了释放时滞对双重弹跳的影响。最后,我们进行了一个实验,得到了与模拟相似的结果,验证了蹦床动力学模型和双重弹跳理论分析的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/504c/9031171/2bc3d99a9059/sensors-22-02916-g001.jpg

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