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模拟与坐姿人体主共振相关的动力学机制。

Modelling the dynamic mechanisms associated with the principal resonance of the seated human body.

作者信息

Matsumoto Y, Griffin M J

机构信息

Human Factors Research Unit, Institute of Sound and Vibration Research, University of Southampton, SO17 1BJ, Southampton, UK.

出版信息

Clin Biomech (Bristol). 2001;16 Suppl 1:S31-44. doi: 10.1016/s0268-0033(00)00099-1.

Abstract

OBJECTIVES

Simple mathematical models have been developed to obtain insights into resonance phenomena observed at about 5 Hz in the dynamic responses of the seated human body exposed to vertical whole-body vibration.

DESIGN

Alternative lumped parameter models with a few degrees-of-freedom have been investigated. Rotational degrees-of-freedom, with eccentricity of the centre of gravity of the mass elements, represented responses in the fore-and-aft and pitch axes caused by vertical vibration.

BACKGROUND

The causes of body resonance are not fully understood, but this information is required to develop cause-effect relationships between vibration exposures and effects on human health, comfort and performance.Method. The inertial and geometric parameters for models were based on published anatomical data. Other mechanical parameters were determined by comparing model responses to experimental data.

RESULTS

Two models, with four and five degrees-of-freedom, gave more reasonable representations than other models. Mechanical parameters obtained with median and individual experimental data were consistent for vertical degrees-of-freedom but varied for rotational degrees-of-freedom.

CONCLUSIONS

The resonance of the apparent mass at about 5 Hz may be attributed to a vibration mode consisting of vertical motion of the pelvis and legs and a pitch motion of the pelvis, both of which cause vertical motion of the upper-body above the pelvis, a bending motion of the spine, and vertical motion of the viscera.

RELEVANCE

The mathematical models developed in this study may assist understanding of the dynamic mechanisms responsible for resonances in the seated human body. The information is required to represent mechanical responses of the body and assist the development of models for specific effects of vibration.

摘要

目的

已开发出简单的数学模型,以深入了解在垂直全身振动作用下,坐姿人体动态响应中约5Hz处观察到的共振现象。

设计

研究了具有几个自由度的替代集总参数模型。质量元件重心具有偏心距的转动自由度,代表了垂直振动引起的前后轴和俯仰轴响应。

背景

人体共振的原因尚未完全了解,但开发振动暴露与对人类健康、舒适度和性能影响之间的因果关系需要这些信息。方法:模型的惯性和几何参数基于已发表的解剖学数据。通过将模型响应与实验数据进行比较来确定其他机械参数。

结果

具有四个和五个自由度的两个模型比其他模型给出了更合理的表示。用中位数和个体实验数据获得的机械参数在垂直自由度上是一致的,但在转动自由度上有所不同。

结论

约5Hz处表观质量的共振可能归因于一种振动模式,该模式由骨盆和腿部的垂直运动以及骨盆的俯仰运动组成,这两种运动都会导致骨盆上方上半身的垂直运动、脊柱的弯曲运动以及内脏的垂直运动。

相关性

本研究中开发的数学模型可能有助于理解坐姿人体共振的动态机制。表示人体的机械响应以及协助开发振动特定影响的模型需要这些信息。

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