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Seat vibration in military propeller aircraft: characterization, exposure assessment, and mitigation.

机译:军用螺旋桨飞机的座椅振动:特征,暴露评估和缓解。

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INTRODUCTION: There have been increasing reports of annoyance, fatigue, and even neck and back pain during prolonged operation of military propeller aircraft, where persistent multi-axis vibration occurs at higher frequencies beyond human whole-body resonance. This paper characterizes and assesses the higher frequency vibration transmitted to the occupants onboard these aircraft. METHODS: Multi-axis accelerations were measured at the occupied seating surfaces onboard the WC/C-130J, C-130H3, and E-2C Hawkeye. The effects of the vibration were assessed in accordance with current international guidelines (ISO 2631-1:1997). The relative psychophysical effects of the frequency components and the effects of selected mitigation strategies were also investigated. RESULTS: The accelerations associated with the blade passage frequency measured on the passenger seat pans located on the side of the fuselage near the propeller plane of the C-130J (102 Hz) and C-130H3 (68 Hz) were noteworthy (5.19 +/- 1.72 ms(-2) rms and 7.65 +/- 0.71 ms(-2) rms, respectively, in the lateral direction of the aircraft). The psychophysical results indicated that the higher frequency component would dominate the side passengers' perception of the vibration. Balancing the props significantly reduced the lower frequency propeller rotation vibration (17 Hz), but had little effect on the blade passage frequency vibration. CONCLUSIONS: The relationships among the frequency, vibration direction, and seat measurement sites were complex, challenging the development of seating systems and mitigation strategies. Psychophysical metrics could provide a tool for optimizing mitigation strategies, but the current international vibration standard may not provide optimum assessment methods for evaluating higher frequency operational exposures.
机译:简介:在军用螺旋桨飞机长时间运行期间,烦人,疲劳甚至脖子和背部疼痛的报道越来越多,在这种情况下,持续的多轴振动发生在人体全身共振以外的更高频率。本文表征并评估了传递到这些飞机上乘员的高频振动。方法:在WC / C-130J,C-130H3和E-2C Hawkeye飞机上的被占用座位表面上测量多轴加速度。根据当前的国际准则(ISO 2631-1:1997)评估了振动的影响。还研究了频率分量的相对心理生理影响以及所选缓解策略的影响。结果:在靠近C-130J(102 Hz)和C-130H3(68 Hz)螺旋桨平面的机身侧面的乘客座板上测量的与叶片通过频率相关的加速度值得注意(5.19 + / -在飞机的横向方向上分别为1.72 ms(-2)rms和7.65 +/- 0.71 ms(-2)rms)。心理物理结果表明,较高的频率分量将主导侧乘客对振动的感知。平衡支柱可显着降低低频螺旋桨旋转振动(17 Hz),但对叶片通过频率振动影响很小。结论:频率,振动方向和座椅测量位置之间的关系非常复杂,对座椅系统和缓解策略的发展提出了挑战。心理物理指标可以提供一种用于优化缓解策略的工具,但是当前的国际振动标准可能无法提供用于评估高频操作暴露的最佳评估方法。

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