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The Effect of Temperature Differences on The Distribution of an Airborne Contaminant in an Experimental Room

机译:温差对实验室内空气污染物分布的影响

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摘要

Estimating exposure to contaminants emitted into workroom air is essential for worker protection. Although contaminant concentrations are often not spatially uniform within workrooms, many methods for estimating exposure do not adequately account for this variability. Here the impact of temperature differences within a room on spatial contaminant distribution was studied. Tracer gas (99.5% propylene) concentrations were monitored automatically at 144 sampling points with a photoionization detector. One wall was chosen to represent a building's external wall and was heated or cooled to simulate summer or winter conditions. Experiments were preformed at two flow rates (5.5 and 3.3 m3 min−1) and six thermal conditions (isothermal, three summer conditions and two winter conditions). For 5.5 m3 min−1 and all thermal conditions, the coefficient of variation (CV) ranged from 0.34 to 0.45 and the normalized average concentrations were similar. For 3.3 m3 min−1, winter conditions produced greater spatial variability of concentration (CV = 0.72 and 1.10) than isothermal or summer conditions (CV range = 0.29–0.34). Tests simulating winter conditions suggest that the resulting stable temperature structure inhibited the dilution of the tracer and enhanced its segregation in the lower portion of the room, especially for the lower flow rate (3.3 m3 min−1). Therefore, not explicitly addressing thermal effect in exposure modeling may impact the estimated accuracy and precision when used for rooms that are non-isothermal and not well mixed. These findings also have implications for air monitoring. Dispersion patterns for different thermal conditions were found to be substantially different, even when the mean concentrations were nearly the same. Thus, monitoring data from a single season should not be taken as representative of the entire year, when summer and winter conditions create temperature gradients in a room.
机译:估算暴露于工作室空气中污染物的暴露对于保护工人至关重要。尽管工作室中的污染物浓度通常在空间上不均匀,但是许多估算暴露的方法并不能充分说明这种差异。在这里,研究了室内温度差异对空间污染物分布的影响。用光电离检测器在144个采样点自动监测示踪气体(99.5%的丙烯)浓度。选择一堵墙代表建筑物的外墙,并对其进行加热或冷却以模拟夏季或冬季的状况。实验以两种流速(5.5和3.3 m 3 min -1 )和六个热条件(等温,三个夏季条件和两个冬季条件)进行。在5.5 m 3 min −1 和所有热条件下,变异系数(CV)为0.34至0.45,归一化平均浓度相似。对于3.3 m 3 min −1 ,冬季条件下的浓度空间变异性(CV = 0.72和1.10)比等温或夏季条件下(CV范围= 0.29–0.34) 。模拟冬季条件的测试表明,所形成的稳定温度结构抑制了示踪剂的稀释并增强了其在房间下部的隔离,特别是对于较低的流速(3.3 m 3 min -1 )。因此,当用于非等温且混合不充分的房间时,在曝光建模中未明确解决热效应可能会影响估计的准确性和精确度。这些发现对空气监测也有影响。发现即使平均浓度几乎相同,不同热条件下的分散模式也大不相同。因此,当夏季和冬季的条件在房间内形成温度梯度时,不应将来自单个季节的监视数据视为全年的代表。

著录项

  • 来源
    《Annals of Occupational Hygiene》 |2006年第5期|527-537|共11页
  • 作者单位

    Department of Environmental Health Sciences Arnold School of Public Health University of South Carolina Columbia SC 29208 USA;

    Department of Mechanical Engineering University of South Carolina Columbia SC 29208 USA;

    Department of Epidemiology and Biostatistics Arnold School of Public Health University of South Carolina Columbia SC 29208 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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