Vibration & Noise Control Lab, Mechanical and Industrial Engineering Department, Indian Institute of Technology Roorkee, Roorkee, India.
Ergonomics. 2021 Jun;64(6):744-754. doi: 10.1080/00140139.2020.1865575. Epub 2020 Dec 30.
The vibration discomfort to the human body in semi-supine posture is currently evaluated as per ISO 2631-1, although it is recommended for sitting, standing and recumbent posture. The present study investigated the frequency-dependence of subjective responses of semi-supine humans to vertical vibration (0.5-1.5 m s r.m.s.) across the frequency range 2.0-16.0 Hz. The subjects (14 males) judged the discomfort caused due to sinusoidal vibration using a modified absolute magnitude estimation method. The significant variation of rate of growth of discomfort across the frequency spectra caused the shape of equivalent comfort contour to vary with the vibration magnitude. The equivalent comfort contours illustrated significant discomfort between 8.0 and 10.0 Hz. Moreover, for frequencies above 10.0 Hz, substantial vibration acceleration was required to cause discomfort of the same intensity, implying that the frequency dependence of semi-supine posture is distinct from other postures. The frequency weighting obtained for semi-supine posture suggested that the discomfort estimation based on ISO 2631-1 was relatively accurate though conservative. The discomfort caused by vertical vibration to the human in semi-supine posture was quite different from other postures. The present study provided the frequency-dependence of vibration discomfort for humans in semi-supine posture. Further, it investigated the suitability of frequency weightings defined in ISO 2631-1 for the acceleration measurements. ISO: International Organization for Standardization; BS: British Standard; NASA: National Aeronautics and Space Administration; BMI: body mass index; AME: absolute magnitude estimation.
半卧位人体对振动的不适感目前按照 ISO 2631-1 进行评估,尽管该标准推荐了坐姿、站姿和卧姿的评估方法。本研究调查了半卧位人体对垂直振动(0.5-1.5 m s r.m.s.)的主观反应随频率(2.0-16.0 Hz)的频率依赖性。14 名男性受试者使用改进的绝对量级估计法来判断正弦振动引起的不适感。由于不适感的增长率在频谱中存在显著变化,导致等效舒适轮廓的形状随振动幅度而变化。等效舒适轮廓图表明,在 8.0 和 10.0 Hz 之间存在明显的不适感。此外,对于高于 10.0 Hz 的频率,需要较大的振动加速度才能引起相同强度的不适感,这表明半卧位的频率依赖性与其他姿势明显不同。半卧位获得的频率加权表明,基于 ISO 2631-1 的不适感估计虽然保守但相对准确。半卧位人体垂直振动引起的不适感与其他姿势有很大不同。本研究提供了半卧位人体振动不适感的频率依赖性。此外,还研究了 ISO 2631-1 中定义的频率加权在加速度测量中的适用性。ISO:国际标准化组织;BS:英国标准;NASA:美国国家航空航天局;BMI:体重指数;AME:绝对量级估计。