The rationale for soot inertial torque in industrial waste gas treatment equipment is that soot particles can be separated from the airflow when the airflow avoids obstacles in some way. The larger the cross-sectional criterion of the obstacle, the faster the foundation will be when the flow of air avoids the obstacle and the path movement seriously violates the straight line direction. Relatively speaking, the faster the base of soot particles suspended in the air flow violates the direction of the straight line.
On the other hand, if the obstacle criterion is small, the fundamental deviation of particle motion and fitness direction near the obstacle (bending due to the streamline formation of its load air flow). Under the same specification of acetylene gas water output, it can be found that the torque formula of the second case is very large. Therefore, the smaller the cross-sectional criterion of the obstacle, the greater the probability of following the obstacle and fitness particles reaching its surface without avoiding the obstacle along with the detour airflow.
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