Claims
- 1. A method for production of substantially uniform size droplets from a flow of liquid flowing through a first nozzle in the axial flow direction of the nozzle comprising:
- forming the flow of liquid into a first annular flow of liquid;
- periodically modulating the momentum of the annular flow of liquid in the axial flow direction at controlled frequency;
- imparting a cross flow direction component of momentum in the form of a swirl to the annular flow of liquid thereby forming a first modulated flow of liquid having axial flow direction and cross flow direction components of momentum;
- and spraying the so formed first modulated flow through a first nozzle outlet to form a desired spray configuration.
- 2. The method of claim 1 further comprising the step of impinging the first modulated flow on a splash plate to form a modulated liquid fan sheet having components of momentum in the flow direction and cross flow direction.
- 3. The method of claim 1 further comprising the step of forming a second modulated flow through a second nozzle outlet according to the steps of claim 1, spraying the so formed second modulated flow through the second nozzle outlet, and impinging the first and second modulated flows upon each other thereby generating a modulated liquid sheet having components of momentum in the flow direction and cross flow direction.
- 4. The method of claim 3 wherein the modulations of the first and second modulated flows are at approximately the same frequency.
- 5. The method of claim 4 wherein the impinging of the first and second modulated flows is arranged with the respective modulations of the first and second modulated flows out of phase with respect to each other.
- 6. The method of claim 5 wherein the modulations of the respective first and second modulated flows are 30 approximately 180.degree. out of phase with respect to each other.
- 7. The method of claim 3 wherein the impinging of the first and second modulated flows is arranged so that the respective modulated flows impinge upon each other with the respective axes in the flow direction at an angle in the range of approximately 50.degree. to 70.degree..
- 8. The method of claim 3 wherein the impinging of the first and second modulated flows is arranged so that the impinging modulated flows form a liquid fan sheet.
- 9. The method of claim 1 further comprising the step of impinging the modulated flow on a second liquid flow to form a liquid sheet spray.
- 10. The method of claim 1 further comprising the step of varying the amplitude of modulation in the flow direction according to the viscosity of the liquid.
- 11. The method of claim 1 further comprising the step of selecting the frequency of the modulation of momentum in the flow direction according to the selected target droplet size.
- 12. The method of claim 11 further comprising the step of controlling the liquid flow rate to achieve the desired droplet production rate and droplet size.
- 13. The method of claim 1 wherein the steps of modulating the momentum of the annular flow of liquid in the flow direction comprises:
- interposing rotating plates in the annular flow of liquid, said plates being formed with slots around at least a peripheral portion of the plate surfaces;
- rotating the rotating plate surfaces at differential angular velocities selected to produce a desired droplet production rate and droplet size;
- spacing the rotating plates a distance from each other to achieve a desired amplitude of modulation of momentum in the flow direction;
- and controlling the angular velocity of the downstream rotating plate for imparting the desired component of momentum in the cross flow direction in the form of a swirl of the annular flow.
- 14. The method of claim 3 further comprising the step of varying the amplitude of modulation in the axial flow direction in each of the respective first and second modulated flows according to the viscosity of the liquid.
- 15. The method of claim 3 further comprising the step of selecting the frequency of the modulation of momentum in the axial flow direction in each of the respective first and second modulated flows according to the selected target droplet size.
- 16. The method of claim 15 further comprising the step of controlling the liquid flow rate to achieve the desired droplet production rate and droplet size.
- 17. The method of claim 3 wherein the steps of modulating the momentum of the annular flow of liquid in the axial flow direction in each of the respective first and second modulated flows comprises:
- interposing rotating plates in the respective annular flow of liquid, said plates being formed with slots around at least a peripheral portion of the plate surfaces;
- rotating the rotating plate surfaces at differential angular velocities selected to produce a desired droplet production rate and droplet size;
- spacing the rotating plates a distance from each other to achieve a desired amplitude of modulation of momentum in the flow direction;
- and controlling the angular velocity of the downstream rotating plate for imparting the desired component of momentum in the form of a swirl of the respective annular flow of liquid in the cross flow direction.
- 18. A method for production of substantially uniform size droplets from a flow of liquid comprising:
- forming the flow of liquid into a first annular flow;
- periodically modulating the momentum of the first annular flow of liquid in the flow direction at controlled frequency by interposing rotating plate surfaces in the annular flow of liquid, said plates being formed with openings around at least a portion of said plate surfaces, and rotating the rotating plate surfaces relative to each other at differential angular velocities selected to produce said controlled frequency;
- generating a cross flow direction component of momentum of the first annular flow of liquid by rotating the downstream rotating plate and controlling the angular velocity of the downstream rotating plate for imparting the desired cross flow direction component of momentum in the form of a swirl of the first annular flow thereby forming a first annular modulated flow having components of momentum in the flow direction and cross flow direction; and
- spraying the so formed first annular modulated flow through a first nozzle outlet to form a desired spray configuration;
- forming the flow of liquid into a second annular flow and forming a second annular modulated flow according to the preceding steps, spraying the so formed second annular modulated flow through a second nozzle outlet, and impinging the first and second annular modulated flows upon each other to generate a liquid sheet spray configuration.
- 19. The method of claim 15 wherein the openings in the rotating plate surfaces comprise radial slots.
- 20. The method of claim 18 comprising modulating the first and second annular modulated flows at substantially the same frequency.
- 21. The method of claim 20 wherein the impinging of the first and second annular modulated flows is arranged with the modulations out of phase with respect to each other.
- 22. The method of claim 21 wherein the modulations of the respective first and second annular modulated flows are approximately 180.degree. out of phase with respect to each other.
- 23. An improved nozzle system for production of substantially uniform size droplets from a flow of liquid comprising:
- a first nozzle having annular passageway means for forming the flow of liquid into an annular flow;
- upstream and downstream rotating plates positioned in the annular flow of liquid, said rotating plates being formed with openings around at least a portion of the plates and comprising means for modulating the momentum of the first annular flow of liquid in the flow direction;
- first means for separately rotating and controlling the angular velocity of rotation of the upstream rotating plate;
- second means for separately rotating and controlling the angular velocity of rotation of the downstream rotating plate, said downstream rotating plate comprising means for imparting a cross flow component of momentum in the cross flow direction to the first annular flow in the form of a swirl thereby forming a first modulated flow having components of momentum in the flow direction and cross flow direction;
- and outlet means for spraying the first modulated flow of liquid passing from the annular passageway through the rotating plates.
- 24. The system of claim 23 further comprising a second nozzle constructed and arranged with the configuration of elements of the first nozzle for generating a second modulated flow, said first and second nozzles being oriented with the axes in the respective flow directions at an angle with respect to each other and directed for impingement of the first and second modulated flows for producing a liquid sheet spray.
- 25. The system of claim 23 wherein the downstream rotating plate of the pair of rotating plates positioned in the annular flow is formed with vanes projecting from the openings on the downstream side for imparting a desired component of cross flow momentum in the form of a swirl in the cross flow direction.
- 26. The system of claim 23 further comprising spacing control means for varying the spacing between the upstream and downstream rotating plates for controlling the amplitude of flow direction momentum modulation.
- 27. The system of claim 24 comprising first drive motor means and first timing belt means operatively coupling and driving the upstream rotating plates of the first and second nozzles at the same angular velocity, and second drive motor means and second timing belt means operatively coupling and driving the downstream rotating plates of the first and second nozzles at the same angular velocity but at a differential angular velocity from the upstream rotating plates.
- 28. The system of claim 27 wherein the plate positions are set so that the modulations of momentum introduced in the flow direction of the first nozzle are out of phase with the respective modulations introduced in the second nozzle.
- 29. The system of claim 28 wherein the plate positions are set so that the respective modulations are approximately 180.degree. out of phase.
- 30. The system of claim 23 wherein the openings formed in the rotating plates are radial slots.
- 31. The system of claim 30 wherein the radial slots are equally spaced around the plates.
- 32. An improved nozzle for production of substantially uniform size droplets from a flow of liquid comprising:
- first nozzle means comprising annular passageway means for forming the flow of liquid into a first annular flow in an axial flow direction of the nozzle;
- upstream and downstream rotating plates positioned in the annular flow of liquid, said rotating plates being formed with openings around at least a portion of the plate surfaces and comprising means for modulating the momentum of the first annular flow in the axial flow direction;
- first control means for separately rotating and controlling the angular velocity of rotation of the upstream rotating plate;
- second control means operatively coupled for separately rotating and controlling the angular velocity of rotation of the downstream rotating plate said downstream rotating plate comprising means for imparting a cross flow component of momentum in the cross flow direction to the first annular flow in the form of a swirl thereby forming a first modulated flow having components of momentum in the flow direction and cross flow direction;
- first outlet means for spraying a first modulated flow of liquid passing from said annular passageway of the first nozzle means through the rotating plates;
- second nozzle means constructed and arranged with the same configuration of elements as the first nozzle means for generating a second modulated flow, said first and second nozzle means being oriented at an angle with respect to each other and directed for impingement of the first and second modulated flows for producing a modulated liquid sheet spray having components of momentum in the flow direction and cross flow direction.
- 33. The nozzle of claim 32 comprising first drive motor means operatively coupling and driving the upstream rotating plates of the first and second nozzle means at the same angular velocity, and second drive motor means and second timing belt means operatively coupling and driving the downstream rotating plates of the first and second nozzle means at the same angular velocity but at a differential angular velocity from the upstream rotating plates.
- 34. The nozzle of claim 32 wherein the plate positions are set so that the modulations of momentum of the first annular flow introduced in the flow direction of the first nozzle means are out of phase with the respective modulations of momentum of the second annular flow introduced in the second nozzle means.
- 35. The nozzle of claim 32 wherein the openings around the rotating plates comprise radial slots.
- 36. The nozzle of claim 35 wherein the downstream rotating plate is formed with sufficient thickness and the radial slots with sufficient depth to impart a cross flow component of momentum to the annular flow of liquid upon rotation of the downstream plate.
Government Interests
The U.S. has rights in this invention by reason of research and development support under Department of Energy Droplet Project Grant No. AC/02-83CE40626.
US Referenced Citations (9)