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首页> 外文期刊>Indian Journal of Science and Technology >Computational Study of Indoor Pollutant Dispersion of an Apartment
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Computational Study of Indoor Pollutant Dispersion of an Apartment

机译:住宅室内污染物扩散的计算研究

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Objectives: Indoor Air Quality (IAQ) is very important for the health of human beings. Proper ventilation of apartment can improve IAQ. The objective of the study is to analyse the pollutant dispersion behaviour inside the fluid domain at fixed boundary conditions. Methods/Statistical Analysis: A 2BHK apartment has been taken for study. The fluid domain of apartment has been simulated in the Computational Fluid Dynamics (CFD) software “ANSYS Fluent 16.2”. Four inlet doors, four inlet windows, one outlet door, one outlet window and two ventilations from toilets were taken in the apartment. Seven inlet pollutant sources at the middle of the bottom of each enclosed area i.e. drawing/dining room, master bedroom, bedroom 1, kitchen, toilet 1 and toilet 2 have been considered. The methane gas is selected as the pollutant in the study. The k-epsilon (2 equations) model has been used and methane-air mixture has been taken for species transport. Findings: The methane mass fraction has been studied at different planes and at different locations of the domain. It was observed that the pollutant dispersion phenomena were varying at different locations and with this the highest methane mass fraction zone have been discussed. Application/Improvements: Simulated model can be useful in urban management and planning to find the best geometrical configurations of infrastructure, especially residential, to achieve proper and effective ventilations. Present model can also be more effective with environmental wind tunnel validations.
机译:目标:室内空气质量(IAQ)对人类健康非常重要。适当的公寓通风可以改善室内空气质量。研究的目的是分析固定边界条件下流体域内的污染物扩散行为。方法/统计分析:已在2BHK公寓进行研究。公寓的流体域已在计算流体动力学(CFD)软件“ ANSYS Fluent 16.2”中进行了仿真。在公寓中,取了四个进风门,四个进风窗,一个出风门,一个出风窗和两个厕所的通风装置。在每个封闭区域底部中间的七个入口污染物源,即客厅/饭厅,主卧室,卧室1,厨房,卫生间1和卫生间2已被考虑。研究中选择了甲烷气体作为污染物。使用了k-ε(2个方程)模型,并采用了甲烷-空气混合物进行物种迁移。研究结果:甲烷的质量分数已在不同平面和不同区域进行了研究。据观察,污染物的扩散现象在不同的​​位置是不同的,因此讨论了甲烷质量分数最高的区域。应用/改进:模拟模型可用于城市管理和规划中,以找到基础结构(尤其是住宅)的最佳几何构型,以实现适当和有效的通风。通过环境风洞验证,当前模型也可以更有效。

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