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用于预测坐姿和振动幅度对人体垂直表观质量影响的变参数单自由度模型。

A variable parameter single degree-of-freedom model for predicting the effects of sitting posture and vibration magnitude on the vertical apparent mass of the human body.

机构信息

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

出版信息

Ind Health. 2010;48(5):654-62. doi: 10.2486/indhealth.mswbvi-33.

Abstract

Models of the vertical apparent mass of the human body are mostly restricted to a sitting posture unsupported by a backrest and ignore the variations in apparent mass associated with changes in posture and changes in the magnitude of vibration. Using findings from experimental research, this study fitted a single degree-of-freedom lumped parameter model to the measured vertical apparent mass of the body measured with a range of sitting postures and vibration magnitudes. The resulting model reflects the effects of reclining a rigid backrest or reclining a foam backrest (from 0 to 30 degrees), the effects of moving the hands from the lap to a steering wheel, the effects of moving the horizontal position of the feet, and the effects of vibration magnitude (from 0.125 to 1.6 ms(-2) r.m.s.). The error between the modelled and the measured apparent mass was minimised, for both the apparent masses of individual subjects and the median apparent masses of groups of 12 subjects, for each sitting posture and each vibration magnitude. Trends in model parameters, the damping ratios, and the damped natural frequencies were identified as a function of the model variables and show the effects of posture and vibration magnitude on body dynamics. For example, contact with a rigid backrest increased the derived damped natural frequency of the principal resonance as a result of reduced moving mass and increased stiffness. When the rigid backrest was reclined from 0 to 30º, the damping decreased and the resonance frequency increased as a result of reduced moving mass. It is concluded that, by appropriate variations in model parameters, a single degree-of-freedom model can provide a useful fit to the vertical apparent mass of the human body over a wide range of postures and vibration magnitudes. When measuring or modelling seat transmissibility, it may be difficult to justify an apparent mass model with more than a single degree-of-freedom if it does not reflect the large influences of vibration magnitude, body posture, and individual variability.

摘要

人体垂直视在质量模型大多局限于无靠背支撑的坐姿,且忽略了与姿势变化和振动幅度变化相关的视在质量变化。本研究使用实验研究结果,针对一系列坐姿和振动幅度,拟合了一个单自由度集中参数模型来测量人体的垂直视在质量。所得模型反映了以下因素的影响:刚性靠背后倾或泡沫靠背后倾(0 至 30 度)、将手从大腿移到方向盘、脚部水平位置移动,以及振动幅度(0.125 至 1.6 ms(-2) r.m.s.)。针对每个坐姿和每个振动幅度,对个体受试者的视在质量和 12 名受试者的中位数视在质量,对模型和测量得到的视在质量之间的误差进行最小化。模型参数、阻尼比和阻尼固有频率的趋势,作为模型变量的函数被识别出来,从而展示了姿势和振动幅度对身体动力学的影响。例如,与刚性靠背接触会由于移动质量减小和刚度增加而增加主共振的推导阻尼固有频率。当刚性靠背从 0 度向后倾斜 30 度时,由于移动质量减小,阻尼减小,共振频率增加。研究结论表明,通过适当的模型参数变化,一个单自由度模型可以为人体在广泛的姿势和振动幅度范围内提供有用的垂直视在质量拟合。在测量或模拟座椅传递率时,如果模型不能反映振动幅度、身体姿势和个体可变性的巨大影响,那么具有一个以上自由度的视在质量模型可能难以证明其合理性。

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