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Comparison of Geometrical Layouts for a Multi-Box Aerosol Model from a Single-Chamber Dispersion Study

机译:从单室扩散研究中比较多箱气溶胶模型的几何布局

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Models are increasingly used to estimate and pre-emptively calculate the occupational exposure of airborne released particulate matter. Typical two-box models assume instant and fully mixed air volumes, which can potentially cause issues in cases with fast processes, slow air mixing, and/or large volumes. In this study, we present an aerosol dispersion model and validate it by comparing the modelled concentrations with concentrations measured during chamber experiments. We investigated whether a better estimation of concentrations was possible by using different geometrical layouts rather than a typical two-box layout. A one-box, two-box, and two three-box layouts were used. The one box model was found to underestimate the concentrations close to the source, while overestimating the concentrations in the far field. The two-box model layout performed well based on comparisons from the chamber study in systems with a steady source concentration for both slow and fast mixing. The three-box layout was found to better estimate the concentrations and the timing of the peaks for fluctuating concentrations than the one-box or two-box layouts under relatively slow mixing conditions. This finding suggests that industry-relevant scaled volumes should be tested in practice to gain more knowledge about when to use the two-box or the three-box layout schemes for multi-box models.
机译:越来越多地使用模型来估计和预先计算空气中释放的颗粒物的职业暴露。典型的两箱模型假定空气量是即时和完全混合的,这可能在过程快速,空气混合缓慢和/或体积大的情况下引起问题。在这项研究中,我们提出了一种气溶胶扩散模型,并通过将模拟浓度与室内实验期间测得的浓度进行比较来对其进行验证。我们调查了是否可以通过使用不同的几何布局而不是典型的两盒布局来更好地估计浓度。使用了一个框,两个框和两个三个框的布局。发现一箱模型低估了靠近源的浓度,而高估了远场的浓度。两室模型布局基于室内研究的比较结果,在慢速和快速混合均具有稳定源浓度的系统中表现良好。发现在相对缓慢的混合条件下,与一箱式或两箱式布局相比,三箱式布局可以更好地估计浓度和波动浓度峰的时间。该发现表明,应在实践中测试与行业相关的按比例缩放的体积,以获取有关何时对多盒模型使用两盒式或三盒式布局方案的更多知识。

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