Nozzle including a venturi tube creating external cavitation...

B - Operations – Transporting – 05 – B

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B05B 1/34 (2006.01) B05B 1/00 (2006.01) B05B 7/00 (2006.01) B05B 7/10 (2006.01) F23D 11/10 (2006.01) F23D 11/26 (2006.01) F23D 11/38 (2006.01)

Patent

CA 2167719

A nozzle (20) for atomizing a liquid includes at least one Venturi tube (24) which defines a liquid flow path and has an entrance cone (27), an intermediate throat (30) of diameter dn, and an exit cone (31) having a length along the flow path to an exit port (32) of at least about 2dn. The exit cone (31) also has an angle of divergence that varies from 0 degree at the throat (30) to about 6 degrees at the exit port (32). As liquid with an entrained gas passes through the throat (30) with a Reynold's number greater than about 2300, the liquid static pressure reduces and the entrained gas forms cavities that grow. When the liquid emerges from the nozzle (20), the liquid static pressure rises and causes the gas cavities to collapse and to produce forces that are sufficient to atomize the liquid and to break atomic, molecular and crystalline bonds in the liquid.

Cette tuyère (20) de pulvérisation d'un liquide comporte au moins un tube de Venturi (24) définissant une voie d'écoulement. Elle se compose d'un cône d'entrée (27), d'un rétrécissement intermédiaire (30) de diamètre "dn" et d'un cône de sortie (31). Sa longueur est orientée selon la voie d'écoulement qui débouche sur un orifice de sortie (32) d'un diamètre minimum d'environ 2 dn. L'angle de divergence du cône de sortie (31) varie de 0 degrés au niveau du rétrécissement (30) jusqu'à environ 6 degrés au niveau de l'orifice de sortie (32). Lorsqu'un liquide et son gaz propulseur passent au niveau du rétrécissement (30) et que le nombre de Reynolds est supérieur à environ 2.300, la pression statique du liquide diminue et le gaz propulseur forme des cavités qui ont tendance à croître. Lorsque le liquide sort de la tuyère (20), la pression statique monte. Cela provoque une dépression cavitante externe du gaz et exerce des forces qui suffisent à pulvériser le liquide et à casser les liaisons atomiques, moléculaires et cristallines qui existaient dans le liquide.

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