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比较建筑工人(钢筋弯曲工和钢筋安装工)在炎热环境中的生理和感知反应。

Comparing the physiological and perceptual responses of construction workers (bar benders and bar fixers) in a hot environment.

作者信息

Wong Del Pui-Lam, Chung Joanne Wai-Yee, Chan Albert Ping-Chuen, Wong Francis Kwan-Wah, Yi Wen

机构信息

Human Performance Laboratory, Technological and Higher Education Institute of Hong Kong, Room 313, 20A, Tsing Yi Road, Tsing Yi Island New Territories, Hong Kong, China.

Department of Health and Physical Education, The Hong Kong Institute of Education, D4-2/F-03, Block D4, 10 Lo Ping Road, Tai Po, N.T., Hong Kong, China.

出版信息

Appl Ergon. 2014 Nov;45(6):1705-11. doi: 10.1016/j.apergo.2014.06.002. Epub 2014 Jun 27.

Abstract

This study aimed to (1) quantify the respective physical workloads of bar bending and fixing; and (2) compare the physiological and perceptual responses between bar benders and bar fixers. Field studies were conducted during the summer in Hong Kong from July 2011 to August 2011 over six construction sites. Synchronized physiological, perceptual, and environmental parameters were measured from construction rebar workers. The average duration of the 39 field measurements was 151.1 ± 22.4 min under hot environment (WBGT = 31.4 ± 2.2 °C), during which physiological, perceptual and environmental parameters were synchronized. Energy expenditure of overall rebar work, bar bending, and bar fixing were 2.57, 2.26 and 2.67 Kcal/min (179, 158 and 186 W), respectively. Bar fixing induced significantly higher physiological responses in heart rate (113.6 vs. 102.3 beat/min, p < 0.05), oxygen consumption (9.53 vs. 7.14 ml/min/kg, p < 0.05), and energy expenditure (2.67 vs. 2.26 Kcal/min, p < 0.05) (186 vs. 158 W, p < 0.05) as compared to bar bending. Perceptual response was higher in bar fixing but such difference was not statistically significant. Findings of this study enable the calculation of daily energy expenditure of rebar work.

摘要

本研究旨在

(1)量化钢筋弯曲和固定各自的体力工作量;(2)比较钢筋弯曲工和钢筋固定工之间的生理和感知反应。于2011年7月至8月夏季期间在香港的六个建筑工地进行了实地研究。对建筑钢筋工人同步测量了生理、感知和环境参数。在炎热环境(湿球黑球温度=31.4±2.2℃)下,39次实地测量的平均持续时间为151.1±22.4分钟,在此期间生理、感知和环境参数是同步的。钢筋整体工作、钢筋弯曲和钢筋固定的能量消耗分别为2.57、2.26和2.67千卡/分钟(179、158和186瓦)。与钢筋弯曲相比,钢筋固定在心率(113.6对102.3次/分钟,p<0.05)、耗氧量(9.53对7.14毫升/分钟/千克,p<0.05)和能量消耗(2.67对2.26千卡/分钟,p<0.05)(186对158瓦,p<0.05)方面引起显著更高的生理反应。钢筋固定的感知反应更高,但这种差异无统计学意义。本研究结果有助于计算钢筋工作的每日能量消耗。

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