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Carbon monoxide transport in an enclosed room with sources from a water heater in the adjacent balcony

机译:一氧化碳在密闭房间中的运输,其来源来自相邻阳台的热水器

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This paper has presented a computational analysis of carbon monoxide (CO) concentration inside a typical enclosed room of a residential building in Taiwan. CO is produced from a house-used natural gas water heater installed in the balcony. It is then diffused into the adjacent bedroom, which often causes serious poisoning accidences. A general-purpose computational fluid dynamics (CFD) code is employed to predict the CO concentration and airflow fields inside a three-dimensional (3D) modeled house. The variation of CO concentration was simulated under different scenarios of vent air flow rates and exit openings. It was found that under the ventilation conditions of V > 0.0003 m/s, the levels of CO concentration in the bedroom is significantly decreased due to the entrainment of fresh air into the bedroom from the inside door. The present results could be used as a base for ventilation design for enclosed rooms, aiming at a proper ventilation system selection for avoiding the CO poisoning.
机译:本文介绍了台湾一栋住宅建筑的典型封闭室内的一氧化碳(CO)浓度的计算分析。 CO由安装在阳台上的家用天然气热水器产生。然后,它扩散到相邻的卧室,这通常会导致严重的中毒事故。通用计算流体动力学(CFD)代码用于预测三维(3D)建模房屋内的CO浓度和气流场。在不同的排气流量和出口情况下,模拟了CO浓度的变化。发现在V> 0.0003 m / s的通风条件下,由于新鲜空气从内门进入卧室,卧室中的CO浓度水平显着降低。本研究结果可作为密闭房间通风设计的基础,旨在选择合适的通风系统以避免CO中毒。

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