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首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >A distributed computational model for estimating room air level of constituents due to aerosol emission from e-vapor product use
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A distributed computational model for estimating room air level of constituents due to aerosol emission from e-vapor product use

机译:用于估计由于电子蒸汽产品的气溶胶排放引起的房间空气水平的分布式计算模型

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摘要

Most indoor air quality models reported in the literature are well-mixed models. A well-mixed model estimates the room average concentration of constituents from sources. It does not provide information on (1) how far and how fast the emitted chemicals travel in the indoor space? And (2) how the concentration changes as a function of distance from the emission source? We developed a distributed model, using computational fluid dynamics and thermodynamics principles, which allows for aerosol dispersion in an indoor space and includes evaporation and condensation of constituents in a multi-compound aerosol mixture. The distributed model can estimate the spatial and temporal variations of the concentration of individual constituents present in the emitted aerosol in vapor and particulate phases separately. Results from the model were compared with the published experimental data and were found to be in good agreement. A sensitivity analysis was performed to evaluate the impact of various parameters that affect the air level of the emitted constituents within an indoor space, including rate of emission, the rate of air exchange, etc. The model can also be used to estimate the level of second hand exposure in a confined space where e-vapor products (EVPs) are used.
机译:文献中报告的大多数室内空气质量模型是混合良好的模型。混合模型估计来自来源的房间平均成分浓度。它没有提供有关(1)发出的化学品在室内空间中旅行的程度以及快速的信息? (2)浓度如何随着排放源的距离而变化?我们开发了一种分布式模型,使用计算流体动力学和热力学原理,其允许在室内空间中进行气溶胶分散,并且包括在多化合物气溶胶混合物中的成分蒸发和缩合。分布式模型可以分别估计蒸汽和颗粒相中发出的气溶胶中存在的各个成分浓度的空间和时间变化。该模型的结果与已发表的实验数据进行比较,并被发现符合良好的一致性。进行敏感性分析以评估影响室内空间内发射成分的空气水平的各种参数的影响,包括发射率,空气交换率等。该模型也可用于估计水平在使用电子蒸汽产物(EVP)的狭窄空间中的二手曝光。

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