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Contaminant Dispersion in the Vicinity of a Worker in a Uniform Velocity Field

机译:均匀速度场中工人附近的污染物扩散

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The transportation of gaseous contaminant from a low and moderate low impulse (momentum < 1 m s~-1) source to the breathing zone was studied in a uniform air stream flow. Results of the effects of the direction and the velocity of principal air flow, convection due to a human body, arm movement of a human being and the type of source on the concentration profiles are presented. Three important results were obtained. Firstly, for a given low and moderate impulse low impulse contaminant source in the near field of a worker, his/her orientation Relative to the principal air flow direction is the most important factor in reducing occupational exposure, with an air velocity of about 0.3 m s~-1. Secondly, the effect of convection resulting from body heat on air flow was lower than expected. Thirdly, arm movements influence contaminant dispersion, and should be included when models assessing exposure are developed. The present data can also be used to validate existing computational fluid dynamic (CFD) models.
机译:研究了气态污染物从低和中等低冲量(动量<1 m s〜-1)源向均匀气流的迁移过程。给出了主要气流的方向和速度,人体对流,人的手臂运动以及源的类型对浓度分布的影响的结果。获得了三个重要结果。首先,对于工人近场中的给定的低脉冲和中脉冲低脉冲污染物源,其方向相对于主要气流方向是减少职业暴露的最重要因素,空气速度约为0.3 ms 〜-1。其次,由人体热量产生的对流对气流的影响低于预期。第三,手臂的运动会影响污染物的扩散,在评估暴露的模型时应包括在内。当前数据还可以用于验证现有的计算流体动力学(CFD)模型。

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