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Dispersion of VOC vapours in the surface treatment workspace: influence of variability in diffusivity, mass transfer and air velocity.

机译:表面处理工作空间中VOC蒸汽的分散:扩散率,质量传递和空气速度的变化的影响。

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摘要

Wherever solvents are allowed to disperse into the workspace it is necessary to be able to predict and determine their concentration and the effect of air velocity variations. Models developed to predict dispersion for assessing ventilation efficiency and worker exposure are validated against measured data with varying success. In numerical convection–dispersion models, including computational fluid dynamics methods, the transport coefficient effective diffusivity is used as a turbulence closure parameter and air velocities are used to define convective mass transport. This study shows how transport coefficient values, empirically estimated from airborne volatile organic carbon vapour concentrations from a solvent source, vary in a ventilated workspace. Variability in effective diffusivity values demonstrates non-Fickian dispersion from the source along the length of a one-dimensional axis. An important finding was that a correlation between air velocity and vapour transport data was not found. This suggests that air velocity should not be used a priori to represent mass transport in the determination of vapour dispersion in the workplace.
机译:无论何时允许溶剂分散到工作空间中,都必须能够预测和确定其浓度以及风速变化的影响。针对预测的分散性评估通风效率和工人暴露程度而开发的模型已针对各种成功的测量数据进行了验证。在包括计算流体动力学方法在内的数值对流-弥散模型中,传输系数有效扩散率用作湍流闭合参数,而风速用于定义对流质量传输。这项研究表明,在通风的工作空间中,根据溶剂来源的空气中挥发性有机碳蒸气浓度凭经验估算的传输系数值如何变化。有效扩散率值的变异性表明,沿一维轴的长度从源进行非菲克式色散。一个重要的发现是没有发现空气速度和蒸汽传输数据之间的相关性。这表明在确定工作场所中的蒸气扩散时,不应先验地使用空气速度来表示质量传输。

著录项

  • 作者

    Hilborne V; Averill AF;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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