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Aerodynamics and Cyclone Technology Optimize Smoke Suction Path


Release time:

2025-08-29

Dynamic particle capture technology adopts a side-suction design to shorten the distance between the suction port and the stove, and cooperates with a straight-line air suction slot to generate high-speed airflow, forming a low-pressure cyclone above the pot, directly locking the source of oil fumes and preventing their diffusion. The Coanda effect and air curtain design make the high-speed airflow incline backward and upward along the wall, and the low-speed air curtain at the top forms a circulation flow, blocking the escape path of oil fumes. This greatly improves the oil fume capture efficiency, leaving no room for oil fumes to escape in the kitchen.

Dynamic particle capture technology adopts a side-suction design to shorten the distance between the suction port and the stove, and cooperates with a straight-line air suction slot to generate high-speed airflow, forming a low-pressure cyclone above the pot, directly locking the source of oil fumes and preventing their diffusion. The Coanda effect and air curtain design make the high-speed airflow incline backward and upward along the wall, and the low-speed air curtain at the top forms a circulation flow, blocking the escape path of oil fumes. This greatly improves the oil fume capture efficiency, leaving no room for oil fumes to escape in the kitchen.


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