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摘要:
Based on the structural characteristics of existing buildings and the disadvantages of current mixed ventilation mode in the application to large space buildings, an original column attachment ventilation (CAV) has been proposed. In this study, the experiment utilized a room space with four columns uniformly distributed in the space to visualize the movement of attached airflow along the cylinder surface and the floor, the numerical technique was employed to study the effects of the column layout (i.e., uniform, centralized, dispersed, and crossed distribution) on the air distribution of CAV mode in a standard four-column full scale model of a shopping mall. Seven indices, including airflow pattern, air diffusion performance index (ADPI), air temperature distribution, heat removal effectiveness, draught rate (DR), predicted mean vote (PMV), and carbon dioxide (CO2) concentration, were used to assess the ventilation performance. In the CAV mode with a uniform column layout scheme, the experimental results indicated that the air supply flows downward along the wal surface, forming a secondary attachment with the ground and spreading along the floor in a fan radiation flow mode. Further, an "air lake"—like speed and temperature distribution similar to displacement ventilation (DV) was formed in the occupied zone. In all simulation cases, it was found that the average air velocity was less than 0.25 m/s in occupied zone, the effectiveness for heat removal was more significant than 1.0, DR value was less than 20%, the PMV level can also satisfy most people. The average CO2 concentration was around 470 ppm in the occupied breathing zone. These results indicated that the CAV mode could be an efficient air distribution method. They demonstrated the technical feasibility of applying the CAV in the space under different column layout schemes.
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篇名 A numerical study on the effect of column layout on air distribution and performance of column attachment ventilation
来源期刊 建筑模拟(英文版) 学科
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年,卷(期) 2021,(4) 所属期刊栏目 Indoor/Outdoor Airflow and Air Quality
研究方向 页码范围 1095-1108
页数 14页 分类号
字数 语种 英文
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引文网络交叉学科
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期刊影响力
建筑模拟(英文版)
双月刊
10-1106/TU
eng
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