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Numerical investigation of indoor particulate contaminant transport using the Eulerian-Eulerian and Eulerian-Lagrangian two-phase flow models

机译:欧拉-欧拉和欧拉-拉格朗日两相流模型对室内颗粒污染物迁移的数值研究

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摘要

Transport of micron particles in a displacement ventilated room was simulated using both the Eulerian-Eulerian model and the Eulerian-Lagrangian model. The same inter-phase action mechanisms were included in both models. The models were compared against each other in the aspects of air velocity, particle concentration, and particle-wall interactions. It was found that the two models have similar accuracy in predicting the airflow field while each of them has its own advantage and drawback in modelling particle concentration and particle-wall interactions. The E-E model is capable of providing a mechanistic description of the inter-phase interactions, whilst the E-L model has obvious advantage in modelling particle-wall interactions. Advices were given for choosing an appropriate model for modelling particulate contaminant transport in indoor environments.
机译:使用欧拉-欧拉模型和欧拉-拉格朗日模型对微米颗粒在置换通风室内的传输进行了模拟。两种模型都包含相同的相间作用机制。在空气速度,颗粒浓度和颗粒-壁相互作用方面对模型进行了比较。发现这两种模型在预测气流场方面具有相似的准确性,而它们各自在建模颗粒浓度和颗粒-壁相互作用方面各有优缺点。 E-E模型能够提供相间相互作用的机理描述,而E-L模型在建模颗粒-壁相互作用方面具有明显的优势。提供建议以选择合适的模型来模拟室内环境中的颗粒污染物传输。

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