Liu Wei, You Ruoyu, Chen Chun
1School of Civil Engineering, ZJU-UIUC, Zhejiang University, Haining, 314400 China.
2Division of Fluid and Climate Technology, Department of Civil and Architectural Engineering, KTH Royal Institute of Technology, Brinellvägen 23, Stockholm, 100 44 Sweden.
Build Simul. 2019;12(5):881-889. doi: 10.1007/s12273-019-0513-9. Epub 2019 Mar 6.
Fast simulation tools for the prediction of transient particle transport are critical in designing the air distribution indoors to reduce the exposure to indoor particles and associated health risks. This investigation proposed a combined fast fluid dynamics (FFD) and Markov chain model for fast predicting transient particle transport indoors. The solver for FFD-Markov-chain model was programmed in OpenFOAM, an open-source CFD toolbox. This study used two cases from the literature to validate the developed model and found well agreement between the transient particle concentrations predicted by the FFD-Markov-chain model and the experimental data. This investigation further compared the FFD-Markov-chain model with the CFD-Eulerian model and CFD-Lagrangian model in terms of accuracy and efficiency. The accuracy of the FFD-Markov-chain model was similar to that of the other two models. For the two studied cases, the FFD-Markovchain model was 4.7 and 6.8 times faster, respectively, than the CFD-Eulerian model, and it was 137.4 and 53.3 times faster than the CFD-Lagrangian model in predicting the steady-state airflow and transient particle transport. Therefore, the FFD-Markov-chain model is able to greatly reduce the computing cost for predicting transient particle transport in indoor environments.
用于预测瞬态颗粒传输的快速模拟工具对于设计室内空气分布以减少室内颗粒暴露及相关健康风险至关重要。本研究提出了一种结合快速流体动力学(FFD)和马尔可夫链模型的方法,用于快速预测室内瞬态颗粒传输。FFD - 马尔可夫链模型的求解器是在开源CFD工具箱OpenFOAM中编写的。本研究使用文献中的两个案例来验证所开发的模型,发现FFD - 马尔可夫链模型预测的瞬态颗粒浓度与实验数据之间具有良好的一致性。本研究进一步在准确性和效率方面将FFD - 马尔可夫链模型与CFD - 欧拉模型和CFD - 拉格朗日模型进行了比较。FFD - 马尔可夫链模型的准确性与其他两个模型相似。对于所研究的两个案例,在预测稳态气流和瞬态颗粒传输时,FFD - 马尔可夫链模型分别比CFD - 欧拉模型快4.7倍和6.8倍,比CFD - 拉格朗日模型快137.4倍和53.3倍。因此,FFD - 马尔可夫链模型能够大大降低预测室内环境中瞬态颗粒传输的计算成本。