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Valve wheel rim force capabilities of process operators

机译:过程操作员的气门轮缘力能力

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The force that an operator is able to apply to a valve wheel depends on the location of the wheel and the orientation of the valve stem as well as the diameter of the wheel and the quality of the interface between the wheel and the hands. The objective of this study was to create a database that captured the maximum force that chemical and refinery workers can apply to crack open a valve equipped with a wheel actuator. Participants were 66 volunteer process operators and managers from a refinery and a chemical plant located on the Gulf Coast of the United States. Turning strength was measured by recording the force applied to the rim of the valve wheel during an isometric ocntraction in which there was no movement of the body. The data collected in this study clearly demonstrate a relationship between the posture of the operator, as defined by the height and orientation of the valve wheel, and the maximum turning force that can be applied. For a horizontal stem, the most force could be applied when the valve was in the knee or waist area. For vertical stem valves, operators appear to be able to apply the maximum force when the valve is located between the waist and the shoulder.
机译:操作者能够施加到气门轮上的力取决于气门轮的位置和气门杆的方向,以及气门轮的直径和气门轮与手之间的接触面的质量。这项研究的目的是创建一个数据库,该数据库捕获化学和炼油厂工人可用来最大程度地打开配备有车轮致动器的阀门的最大力。参加者有来自美国墨西哥湾沿岸的一家精炼厂和一家化工厂的66名志愿者过程操作员和经理。转动强度是通过记录等轴测不动过程中施加在气门轮缘上的力来测量的,在该等距运动中,阀体没有运动。在这项研究中收集的数据清楚地证明了由气门轮的高度和方向所定义的操作员的姿势与可以施加的最大转动力之间的关系。对于水平杆,当瓣膜位于膝盖或腰部区域时,可能会施加最大的力。对于立式阀杆,当阀位于腰部和肩部之间时,操作员似乎可以施加最大的力。

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