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Effects of Supply Parameters of Stratum Ventilation on Energy Utilization Efficiency and Indoor Thermal Comfort: A Computational Approach

机译:地层通气供应参数对能源利用效率和室内热舒适性的影响:计算方法

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Stratum ventilation shows the significant potential on energy conservation and indoor thermal comfort under cooling applications. Yet, only limited researches focus on the thermal performance of stratum ventilation under heating condition. The heating and cooling operation characteristic of stratum ventilation is different due to the distinct airflow characteristics. Therefore, this paper investigated the parameters that affect energy utilization efficiency and indoor thermal comfort under heating condition served by stratum ventilation via CFD simulations approach. The supply air parameters included temperature, airflow rate, angle, and return air outlet positions. The evaluation indicators adopt ventilation effectiveness and effective draft temperature (EDT) for assessing the energy utilization efficiency and indoor thermal comfort served by stratum ventilation under heating condition. The results demonstrated that, under the heating mode of stratum ventilation, different effects on the thermal performance were made by the mentioned parameters. The ventilation effectiveness was higher when the air supply temperature is 26°C, airflow rate is 7 air change per hour (ACH), and the air supply angle is 45°. The EDT range of the occupied zone is closest to zero K when the air supply temperature is 28°C, airflow rate is 12 (ACH), and the air supply angle is 60°. The related conclusions obtained from this study provide the theoretical basis for the stratum ventilation design and promote its heating application.
机译:地层通风显示了冷却应用下节能和室内热舒适度的显着潜力。然而,只有有限的研究专注于在加热条件下的地层通风的热性能。由于不同的气流特性,地层通气的加热和冷却操作是不同的。因此,本文研究了通过CFD模拟方法在加热条件下影响能量利用效率和室内热舒适性的参数。供应空气参数包括温度,气流速率,角度和返回空气出口位置。评估指标采用通风效率和有效的温度(EDT),用于评估在加热条件下由地层通风提供的能量利用效率和室内热舒适性。结果表明,在地层通气的加热模式下,通过提到的参数对热性能的不同影响。当空气供应温度为26℃时,通风效果较高,气流率为每小时7空气变化(ACH),空气供应角为45°。当空气供应温度为28°C时,占用区的EDT范围最接近零k,气流率为12(ACH),空气供应角度为60°。本研究中获得的相关结论为Stratum通风设计提供了理论依据,并促进其加热应用。

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