IP Library Granted Patent US 7,934,666
Granted Patent B2
US 7,934,666 · App. 12/717,719 · Granted May 3, 2011

Method of generation of pressure pulsations and apparatus for implementation of this method

Assignee: Institute of Geonics ASCR, V.V.I.
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Quick Facts
Patent No.
US 7,934,666
App. No.
12/717,719
Granted
May 3, 2011
Kind
B2
Abstract

An acoustic generator of pressure pulsations includes a cylindrical waveguide which is caused to vibrate at a low amplitude by an electromechanical transducer. The vibration of the cylindrical waveguide creates low amplitude pressure pulsations in an acoustic chamber containing stationary pressure fluid. A mechanical amplifier, which is part of the acoustic chamber, amplifies the low amplitude pressure pulsations generated by the cylindrical waveguide.

Claims (7)

1. An apparatus for generating of liquid jet pulsations characterized in that it is composed of an acoustic system consisting of an acoustic actuator ( 1 ) connected to an electric power source, said acoustic actuator ( 1 ) comprising an electromechanical transducer ( 10 ) and a cylindrical waveguide ( 11 ), the cylindrical waveguide ( 11 ) having an emissive area that pulsates in a cylindrical portion of an acoustic chamber ( 2 ) of the acoustic actuator ( 1 ), an internal volume of said acoustic chamber ( 2 ) being filled with a pressure liquid ( 3 ), wherein a cross-section of the acoustic chamber ( 2 ) exceeds the emissive area of the cylindrical waveguide ( 11 ) by no more than 20%, said acoustic chamber ( 2 ) including a mechanical amplifier of pulsations ( 4 ) having a conical shape and a liquid waveguide ( 6 ) consisting of metal tubing and/or of hose, said mechanical amplifier of pulsations ( 4 ) is connected with a nozzle and/or nozzle system ( 7 ) by means of the liquid waveguide ( 6 ) that is fitted with a pressure liquid feed ( 5 ); said acoustic system is parallelly connected to the pressure liquid feed ( 5 ) between the nozzle and/or nozzle system ( 7 ) and an exit of the mechanical amplifier of pulsations ( 4 ) of the acoustic chamber ( 2 ).

2. The apparatus for generating of liquid jet pulsations according to claim 1 , wherein the acoustic actuator ( 1 ) is partially immersed in the pressure liquid ( 3 ) in the acoustic chamber ( 2 ).

3. The apparatus for generating of liquid jet pulsations according to claim 1 , wherein the acoustic actuator ( 1 ) is fixed outside the acoustic chamber ( 2 ).

4. The apparatus for generating of liquid jet pulsations according to claim 1 , wherein the ratio of length to diameter of the acoustic chamber ( 2 ) is greater than 1.

5. The apparatus for generating of liquid jet pulsations according to claim 1 , wherein the electromechanical transducer ( 10 ) is piezoelectric or magnetostrictive.

6. The apparatus for generating of liquid jet pulsations according to claim 1 , characterized in that it includes a tuneable resonant chamber ( 9 ) for tuning up of the resonant natural frequency of the acoustic system to the driving frequency of pressure pulsations.

7. The apparatus for generating of liquid jet pulsations according to claim 1 , characterized in that liquid waveguide ( 6 ) is consisted of metal tubing ( 12 ) and hose ( 13 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2010
From: FOLDYNA, JOSEF; SVEHLA, BRANISLAV
To: INSTITUTE OF GEONICS ASCR, V.V.I.
Reel/Frame 024031/0731 →
Priority Claims (1)
CZ PV 2005-168 · Mar 15, 2005 · national
Continuity (2)
Continuation 11908528
Related Publication 20100155502A1 · Jun 24, 2010