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首页> 外文期刊>Science and Technology for the Built Environment >Influence of vane angle on the effectiveness of air conditioning of wall-mounted split-type air conditioners in residential buildings
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Influence of vane angle on the effectiveness of air conditioning of wall-mounted split-type air conditioners in residential buildings

机译:叶上角度对住宅建筑中壁挂式空调空调空调有效性的影响

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摘要

The purpose of this study is to accurately evaluate the effect of vane angle on the effectiveness of air conditioning of wall-mounted split-type air conditioners. First, to determine the detailed characteristics of airflow from an air conditioner opening, airflow rate, turbulence characteristics, and air distribution were measured according to the vane angle. Then, the detailed characteristics were calculated using a simplified opening model with boundary conditions obtained from the calculated results of a cross-flow fan model using the overset mesh technique to validate the computational fluid dynamics simulation. Finally, to evaluate the effectiveness of air conditioning, the effectiveness of air change was calculated under isothermal conditions by varying the vane angle and the setting position of the air conditioner by using the validated computational fluid dynamics model. The measurement results showed that when the vane was set at the middle position (rather than at the left or right positions), the airflow rate increased by 19.0%-20.9% in the high airflow rate mode. The simulation results verified that the simplified opening model was consistent with actual findings, and only a slight difference was observed between actual measurements and the computational fluid dynamics simulation results. Furthermore, installing the air conditioner at the center of a wall and setting the vane at the middle position improved the effectiveness of indoor air conditioning.
机译:本研究的目的是准确评估叶片角度对壁式分裂式空调空调有效性的影响。首先,根据叶片角度测量空调开口,气流速率,湍流特性和空气分布的详细特性。然后,使用简化的开口模型计算详细特征,其中使用普雷修网格技术从横流风扇模型的计算结果获得的边界条件来验证计算流体动力学模拟。最后,为了评估空调的有效性,通过使用验证的计算流体动力学模型改变叶片角度和空调的设定位置,在等温条件下计算空气变化的有效性。测量结果表明,当叶片设定在中间位置(而不是在左侧或右位置)时,气流率在高气流速率模式下增加了19.0%-20.9%。仿真结果证实了简化的开放模型与实际发现一致,并且在实际测量和计算流体动力学模拟结果之间观察到略微差异。此外,在墙壁的中心安装空调并在中间位置设置叶片提高了室内空调的有效性。

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