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首页> 外文期刊>Ocean Engineering >A simplified 3-D human body-seat interaction model and its applications to the vibration isolation design of high-speed marine craft
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A simplified 3-D human body-seat interaction model and its applications to the vibration isolation design of high-speed marine craft

机译:简化的3-D人体-座椅相互作用模型及其在高速船艇隔振设计中的应用

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摘要

High-speed boats experience a harsh vibration environment and human response to this environment is of increasing interest to naval architects who wish to mitigate the effects of vibration and shocks. Based on published experiment data, a three-dimensional human body model with one degree-of-freedom in each direction is established. This model is combined with a simple seat model to construct a simplified 3-D human body-seat interaction model for naval architects to investigate the integrated interaction system when subjected to ship motions. The governing equations describing the dynamics of the human body-seat interactions are formulated and their theoretical solutions are derived. This model, in association with the experimental data recorded on board a high-speed marine craft, is used to study seat isolation system designs. The spring coefficient of the seat isolation system is chosen to avoid any resonance of the human-seat interaction system excited by sea waves. The damping coefficient of the seat isolation system is determined to attenuate motions at the most common excitation frequencies. The designed system is further checked by considering its response to an individual slam impact where the designed system is compared with typical existing seats to illustrate the potential advantages of the proposed approach. In addition the designed seat is compared with existing seats excited by actual boat loads. The study provides a simplified, effective approach for high-speed craft seat design in reducing the shock and vibration level experienced by the crew.
机译:高速船会经受严酷的振动环境,因此希望减轻振动和冲击影响的海军建筑师对人类对这种环境的反应越来越感兴趣。基于已发布的实验数据,建立了在每个方向上具有一个自由度的三维人体模型。该模型与简单的座椅模型相结合,构建了简化的3-D人体-座椅相互作用模型,供海军建筑师研究舰船运动时的集成相互作用系统。建立了描述人体-座椅相互作用动力学的控制方程,并推导了它们的理论解。该模型与高速船上记录的实验数据相关,用于研究座椅隔离系统的设计。选择座椅隔离系统的弹簧系数以避免海浪激发的人机交互系统的任何共振。确定座椅隔离系统的阻尼系数以衰减最常见的激励频率下的运动。通过将设计的系统与典型的现有座椅进行比较,以考虑设计系统对单个撞击的响应,从而进一步检查设计的系统,以说明所提出方法的潜在优势。此外,将设计的座椅与实际船负载激发的现有座椅进行比较。该研究为高速工艺座椅的设计提供了一种简化,有效的方法,可减少机组人员受到的冲击和振动。

著录项

  • 来源
    《Ocean Engineering》 |2009年第10期|732-746|共15页
  • 作者单位

    School of Engineering Sciences, Ship Science, University of Southampton, Highfield Campus, Southampton, Hampshire SO17 1BJ, UK;

    School of Engineering Sciences, Ship Science, University of Southampton, Highfield Campus, Southampton, Hampshire SO17 1BJ, UK;

    School of Engineering Sciences, Ship Science, University of Southampton, Highfield Campus, Southampton, Hampshire SO17 1BJ, UK;

    School of Engineering Sciences, Ship Science, University of Southampton, Highfield Campus, Southampton, Hampshire SO17 1BJ, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    human-seat interaction; human body model; seat vibration isolation; seat designs;

    机译:人与人之间的互动;人体模型座椅隔振;座椅设计;

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