222Rn) dispersion in a ventilated room. The Reyno'/> A Numerical Study of Indoor 222Rn_Air Quality in a Ventilated Room
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A Numerical Study of Indoor 222Rn_Air Quality in a Ventilated Room

机译:通风房中室内222钟形式的数值研究

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This study aimed to numerically investigate the radon (222Rn) dispersion in a ventilated room. The Reynolds-averaged Navier-Stokes (RANS) equations supplemented with equation of energy and radon concentration are solved using the FLUENT code. We are targeting primarily the ventilation effectiveness ($arepsilon_{mathrm{c}}$) and the index of indoor air quality (IIAQ). Different displacement and mixing ventilation modes are investigated in isothermal conditions. Computations have been performed with Reynolds numbers between 5 102 and 4 104, and different Rayleigh numbers between 9.33 108 and 4.66 109, in order to suggest effective ventilation that can ensure a good indoor air quality. The simulation results indicate that the ventilation effectiveness to remove a contaminant of radon 222Rn and the index of indoor air quality are substantially influenced by the ventilation mode and the location of outlet air. From this study, it appears that the air flow and radon dispersion in a ventilated room can be typically predicted or evaluated by computer simulations.
机译:本研究旨在在数值上调查氡( 222 RN)在通风房中的分散。使用流利的代码解决了补充有能量和氡浓度方程的reynolds平均的Navier-Stokes(RANS)方程。我们主要瞄准通风效果( $ varepsilon _ { mathrm { C}} $ )和室内空气质量指数(我 IAQ )。在等温条件下研究了不同的位移和混合通气模式。在5 10之间的reynolds数字进行了计算 2 和4 10. 4 ,以及9.33 10之间的不同瑞利数 8 4.66 10. 9 ,为了提出有效的通风,可以确保室内空气质量良好。模拟结果表明通风效果去除氡的污染物 222 RN和室内空气质量指数基本上受通气模式和出口空气的位置的影响。从本研究中,似乎可以通过计算机模拟预测或评估通风房中的空气流量和氡分散。

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