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STUDY OF INDOOR AIR QUALITY AND THERMAL COMFORT IN A ROOM WITH DISPLACEMENT VENTILATION

机译:排水通风房间室内空气质量和热舒适性研究

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A three-dimensional mathematical model to solve the displacement ventilation is described. The volumetric heat source method is adopted for simulate heat gain and six-flux radiant heat transfer model is introduced in the simulation. The standard k-ε turbulence model is used for predicting indoor air flow patterns, temperature distribution. The Fanger's comfort equations are incorporated in predicting draft risk. The thermal plume and stratification of air in displacement ventilation system are clearly illustrated by numerical results. The results indicated the temperature gradient above the heat source would increase with a higher heat source location. It is also shown that increasing supply air velocity would do good to reduce temperature gradient but this may lead to a higher drat risk in the room with displacement ventilation. Thermal discomfort can be avoided by optimizing the supply air velocity and temperature. These results can be helpful in better understanding and designing this type of ventilation system.
机译:描述了解决位移通气的三维数学模型。采用模拟热增益采用体积热源方法,并在模拟中引入了六磁通辐射传热模型。标准K-ε湍流模型用于预测室内空气流动模式,温度分布。 Fanger的舒适方程被纳入预测风险草案。通过数值结果清楚地说明了位移通风系统中空气的热羽和分层。结果表明热源高于热源的温度梯度将随着较高的热源位置增加。还表明,增加的供应空气速度会对降低温度梯度进行良好,但这可能导致具有位移通风的房间里的更高的Drat风险。通过优化供应空气速度和温度,可以避免热不适。这些结果可以有助于更好地理解和设计这种通风系统。

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