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1.
Chinese Medical Equipment Journal ; (6)2004.
Artigo em Chinês | WPRIM | ID: wpr-587324

RESUMO

In dynamic state,the airflow and particle distribution of class Ⅲ biosafety laboratory is simulated by means of the CFD.The identical results of the simulation and the practical survey show good reliability of this experiment.The result indicates that the good unidirectional air distribution is formed in main lab and air distribution is the main factors to determine the character of particle distribution.

2.
Chinese Medical Equipment Journal ; (6)2003.
Artigo em Chinês | WPRIM | ID: wpr-596087

RESUMO

Objective To discuss the effect of different negative pressure to directional airflow in the main room of BSL-3 laboratory.Methods The author combined the experiment and numerical simulation in the study.Results Under the condition that the air supply volume in the main room of BSL-3 laboratory is ensured invariable,negative pressure is a critical factor to effect air distribution in the lab.Conclusion The simulation result shows that a good form of directional airflow under the condition of-50pa can come into being,which offers some reference to the engineering design.

3.
Chinese Medical Equipment Journal ; (6)1993.
Artigo em Chinês | WPRIM | ID: wpr-589196

RESUMO

This paper analyzes and simulates the effect of the air change rate per hour (ACH) on contamination diffusion airflow field in turbulent clean-room of hole-board ventilation by using CFD. The quality of Contaminant Removal Effectiveness (CRE) is compared with ACH ranging from 15 to 70. According to the simulation,it is the best condition of CRE in clean room when air change rate is 55 per hour,and the conclusion provides a theoretic basis for engineering design.

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