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首页> 外文期刊>Energy and Buildings >Three-dimensional OpenFOAM simulation to evaluate the thermal comfort of occupants, indoor air quality and heat losses inside an indoor swimming pool
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Three-dimensional OpenFOAM simulation to evaluate the thermal comfort of occupants, indoor air quality and heat losses inside an indoor swimming pool

机译:三维OpenFOAM模拟,用于评估居住者的热舒适性,室内空气质量和室内游泳池内的热损失

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This paper presents the thermo-ventilation study in turbulent regime of the airflow with heat and mass transfer in an indoor swimming pool, using the OpenFOAM (Open Field Operation and Manipulation) software. For this purpose, a solver has been developed and adapted to the HVAC domain (Heating, Ventilation and Air-Conditioning) in order to predict various parameters such as the velocity, temperature and relative humidity. This solver is also used to quantify the indoor air quality and the thermal comfort of occupants using respectively the concept "age of air" and the comfort index EDT (Effective Draft Temperature). The numerical results obtained are in good agreement with the measurements carried out previously in the simulated indoor swimming pool. The 24-h statistical analysis for typical winter and summer days showed that, unlike seasonal climate changes, daily climate changes do not have an effect on the pool's internal environment. The calculated thermal flux through the pool envelope showed that it has a good thermal insulation despite the importance of thermal losses caused mainly by the water in the basin. However, the calculated age of air showed a relatively poor ventilated zone essentially due to the weak diffusion of the inlet air, while the calculated EDT indicated that the discomfort caused by the sensation of heat predominates in the swimming pool whether in summer or in winter. The proposed modification of the air blowing conditions improved considerably the indoor air quality and the thermal comfort of occupants. Indeed, the age of air showed lower and homogeneous values and the EDT indicated a predominance of thermal comfort in the living spaces of the swimming pool, In addition, the thermal losses decreased considerably. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文介绍了使用OpenFOAM(开放式现场操作和操纵)软件在室内游泳池中进行热交换和传热的湍流状态下的热通风研究。为此,已经开发出一种求解器并将其应用于HVAC领域(供暖,通风和空调),以便预测各种参数,例如速度,温度和相对湿度。该求解器还用于分别使用概念“空气年龄”和舒适指数EDT(有效通风温度)来量化室内空气质量和乘员的热舒适度。获得的数值结果与先前在模拟室内游泳池中进行的测量结果非常吻合。对典型的冬季和夏季的24小时统计分析表明,与季节性气候变化不同,每日气候变化不会对游泳池的内部环境产生影响。计算得出的通过水池围护结构的热通量表明,尽管有重要的热量损失主要由水池中的水引起,但它具有良好的隔热性。但是,计算出的空气年龄显示出通风区域相对较差,这主要归因于进气的扩散较弱,而计算出的EDT表明,无论是夏季还是冬季,由热感引起的不适感在游泳池中都占主导地位。提议的鼓风条件修改大大改善了室内空气质量和乘员的热舒适性。实际上,空气年龄显示出较低且均一的值,而EDT显示泳池生活空间中主要具有热舒适性。此外,热损失显着降低。 (C)2018 Elsevier B.V.保留所有权利。

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