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A computational fluid dynamics study on the effects of computer fan on indoor airflow and indoor air quality in breathing zone

机译:计算机风扇对呼吸区室内气流和室内空气质量影响的计算流体动力学研究

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摘要

Although desktop computers have been considered in many computational fluid dynamics (CFD) indoor simulations, they were usually simplified as hot boxes. A real desktop computer, however, is not only a heat source but also a momentum source due to the jet airflow generated by the computer case fan. The airflow induced by a desktop case fan could have the same order of magnitude as the ventilation rate of the whole room, and thus is expected to have significant influence upon the indoor airflow field and distribution of contaminants. Obviously, the simplification of desktop computer into a hot box does not sufficiently stand for the actual situation. In this study, a CFD model of a typical office room was built and simulations were conducted to investigate the airflow field and volatile organic compounds (VOC) distribution under two scenarios: (1) computer as a hot box' without a fan and (2) a more realistic computer model with an operating case fan. The comparison of CFD results yielded from these two scenarios demonstrated that the role of computer fan is very important in terms of airflow field and contaminant distribution and should be included in CFD office simulations for the purpose of improved reliability.
机译:尽管台式计算机已在许多计算流体动力学(CFD)室内模拟中得到了考虑,但它们通常被简化为热箱。然而,由于台式机机箱风扇产生的喷射气流,真正的台式计算机不仅是热源,而且还是动量源。台式机箱风扇引起的气流可能与整个房间的通风速率具有相同的数量级,因此预计会对室内气流场和污染物的分布产生重大影响。显然,将台式计算机简化为热箱不足以代表实际情况。在这项研究中,建立了一个典型办公室的CFD模型,并进行了仿真,以研究两种情况下的气流场和挥发性有机化合物(VOC)分布:(1)计算机作为没有风扇的热箱和(2) ),带有操作箱风扇的更逼真的计算机模型。从这两种情况得出的CFD结果的比较表明,就气流场和污染物分布而言,计算机风扇的作用非常重要,为了提高可靠性,应将其包括在CFD办公室模拟中。

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