FIELD: engines and pumps.
SUBSTANCE: proposed taper nozzle scrubber incorporates a housing with a dusty and a purified gas branch pipe, a nozzle spraying system, a bearing and constricting plates with an adapter arranged there between, a mist eliminator representing an adapter layer fitted between the aforesaid plates and a mud separator. Note here that the bearing plates are elastic and the aforesaid adapter arranged above the lower bearing plate is made in elastic materials and represents hollow polyethylene balls or a helical line cut on a spherical surface of the said balls. Note also that the vibrator is arranged on the said lower bearing plate. The aforesaid spraying system represents an acoustic nozzle incorporating a casing housing a cavity resonator to generate acoustic oscillations and air-and-liquid feed nozzles. The casing is made up of an upper cylindrical and lower parts jointed together by, at least, two rods, the upper part accommodating a union with cylindrical and taper aligned orifices to feed a spraying agent, for example, air. Note that the said union inside accommodates the said nozzle furnished with the central liquid feed orifice and aligned with the union, the said nozzle being rigidly locked by the locking plates interacting with the said liquid feed central orifice inner surface. Note also that the housing lower part represents an annular cavity resonator with its inner cylindrical space, aligned with the nozzle, the nozzle liquid feed central orifice being terminated at the resonator edge. The aforesaid resonator proper represents a taper-surface cup, the said taper surface is arranged on the liquid feed nozzle side. Note that said cup is made integral with the aforesaid taper surface ball, the taper surface changing over into annular surface in contact with the resonator outer cylindrical surface.
EFFECT: higher efficiency and reliability provided for by increasing spraying efficiency.
2 cl, 4 dwg
Title | Year | Author | Number |
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IMPULSE-2 TAPER NOZZLE SCRUBBER | 2007 |
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Authors
Dates
2008-11-20—Published
2007-07-03—Filed