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本文引用的文献

1
Airborne infection in a fully air-conditioned hospital. II. Transport of gaseous and airborne particulate material along ventilated passageways.全空调医院中的空气传播感染。II. 气态和空气传播颗粒物在通风通道中的传输。
J Hyg (Lond). 1975 Aug;75(1):45-56. doi: 10.1017/s0022172400047057.
2
Airborne infection in a fully air-conditioned hospital. I. Air transfer between rooms.全空调医院中的空气传播感染。I. 病房间的空气转移
J Hyg (Lond). 1975 Aug;75(1):15-30. doi: 10.1017/s0022172400047033.

通过门口的空气交换。温差、湍流和通风气流的影响。

Air exchange through doorways. The effect of temperature difference, turbulence and ventilation flow.

作者信息

Lidwell O M

出版信息

J Hyg (Lond). 1977 Aug;79(1):141-54. doi: 10.1017/s0022172400052931.

DOI:10.1017/s0022172400052931
PMID:267666
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2129931/
Abstract

Analytical expressions have been derived for the exchange of air across doorways or similar apertures, in terms of the temperature difference between the spaces on both sides of the opening and the net volume of air flowing through this as a result of unbalanced air supply or extract. A simple allowance for turbulence which gives reasonable correspondence with observation is included. The formulae, which assume complete air mixing on both sides of the doorway up to the plane of the aperture, predict outflows from the warmer side, when there is an excess air supply to this side, which are progressively smaller than those observed as the temperature difference rises above 2-3 degrees C and the volume of excess air supply increases to produce an averaged outflow velocity greater than 0-1-0-15 m/s. This seems to be due to lack of mixing of the warm outflowing air with the cooler air mass. A correction factor for this can be deduced as a function of the pressure difference due to the excess air supply. The limiting magnitude and general form of this function are compatible with a simple theoretical model of the air flow patterns involved.

摘要

已根据开口两侧空间之间的温差以及由于空气供应或排出不平衡而流经此开口的空气净体积,推导出了空气通过门口或类似孔口交换的解析表达式。其中包含了对湍流的简单考虑,其与观测结果具有合理的一致性。这些公式假定在门口两侧直至孔口平面处空气完全混合,当向较热一侧供应过量空气时,预测从该侧流出的空气量,随着温差升至2 - 3摄氏度以上且过量空气供应量增加以产生平均流出速度大于0.1 - 0.15米/秒时,实际流出量逐渐小于观测值。这似乎是由于温暖的流出空气与较冷空气团缺乏混合所致。对此的校正因子可作为过量空气供应引起的压力差的函数推导得出。该函数的极限值和一般形式与所涉及气流模式的简单理论模型相符。