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首页> 外文期刊>Journal of Cleaner Production >Performance analysis of wind catcher integrated with shower cooling system to meet thermal comfort conditions in buildings
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Performance analysis of wind catcher integrated with shower cooling system to meet thermal comfort conditions in buildings

机译:集成淋浴冷却系统的集热器的性能分析,可满足建筑物的热舒适条件

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摘要

In this study, natural ventilation and cooling of a two-floor building connected to a wind catcher were studied in which a shower cooling system has been used to reduce ambient air temperature. The capability of the system to meet thermal comfort conditions based on adaptive thermal comfort and ISO/EN 7730 standards was evaluated under different operating conditions. In order to estimate the air change per hour and air flow simulation around and inside the test building, ANSYS FLUENT 6.3 software was utilized and the air temperature at the outlet of the shower cooling system was computed using a thermodynamic model. The results showed that for the wind velocity beyond 0.4 m/s, the ACH value for the rooms could be set in the range of 3-20 h(-1) with the regulation of window's aperture. Under this condition, the temperature and relative humidity of air stream into the building did not change with the wind velocity. Also, it was found that when three buildings are situated in one direction, ACH value for the middle building is less than others. As the ACH value increases, thermal comfort conditions are met for larger values of required cooling demands. Although electrical energy consumption of the proposed system is already lower than evaporative air coolers, it cannot compete with split inverter air conditioners where the relative humidity of ambient air is high. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了连接到集热器的两层建筑的自然通风和降温,其中使用了淋浴降温系统来降低环境空气温度。在不同的操作条件下,评估了系统根据自适应热舒适度和ISO / EN 7730标准满足热舒适度条件的能力。为了估算测试建筑物周围和内部每小时的空气变化和气流模拟,使用了ANSYS FLUENT 6.3软件,并使用热力学模型计算了淋浴冷却系统出口处的空气温度。结果表明,对于风速超过0.4 m / s的情况,房间的ACH值可以在3-20 h(-1)的范围内设置,并且可以调节窗户的孔径。在这种情况下,进入建筑物的气流的温度和相对湿度不会随风速而变化。此外,还发现,当三个建筑物沿一个方向放置时,中间建筑物的ACH值小于其他建筑物。随着ACH值的增加,对于较大的所需冷却需求,可以满足热舒适条件。尽管所建议系统的电能消耗已经低于蒸发式空气冷却器,但它无法与环境空气相对湿度较高的分体式变频空调竞争。 (C)2017 Elsevier Ltd.保留所有权利。

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