Claims
- 1. A process for atomizing a liquid (4) comprising the steps of; introduction of said liquid into a hollow, rotatable cylinder having a cylinder wall (1) with an inner surface (6) and an outer surface (7) and having a plurality of bores (5) formed between said inner and outer surfaces, and rotating said cylinder at a predetermined rotational speed, wherein the liquid (4) being evenly distributed on said inner cylinder surface (6) and over said bores (5) provides per bore, a volumetric flow rate V.sub.B of the liquid (4) determined by 1.0<V.sub.B (a.sup.3 .rho..sup.5 .sigma..sup.5).sup.0.25 <16 and V.sub.B <3195 (.eta..sup.2 /a.rho..sup.2).sup.7/6 (a .rho.(D.sub.B).sup.0.5 /.eta.), where a represents the centrifugal acceleration of the cylinder at said outer surface (7), .rho. is the density of the liquid (4), .sigma. is the surface tension of the liquid (4), and .eta. is the dynamic viscosity of the liquid (4), said centrifugal acceleration a being determined by a=2 D .pi..sup.2 n.sup.2, where D is the diameter of said outer surface (7), D.sub.B is the diameter of each bore (5), and n is said predetermined rotational speed, whereby a laminar disintegration of jets of said liquid leaving said plurality of bores is produced.
- 2. A device of atomizing a liquid (4) comprising; a hollow rotatable cylinder having a cylinder wall (10 with an inner surface (6), an outer surface (7), a bottom side closed by a bottom (2) and an upper side limited by a cover (3) with a central opening, a plurality of bores (5) each with a diameter D.sub.B being formed in the cylinder wall (1) between said inner and outer surfaces (6, 7), wherein the arrangement of said bores with a spacing t measured on said outer surface (7) determined by 1.1 D.sub.B <t<5 D.sub.B, the ratio of the length L.sub.B of each bore (5) between said inner and outer surfaces (6, 7) to said bore diameter D.sub.B being at least 3 and said bore diameter D.sub.B being determined by 10<D.sub.B (.rho. a/.sigma.).sup.0.5 <50 for the production of droplets with an average sizes smaller than 100 .mu.m, where a represents the centrifugal acceleration of the cylinder at said outer surface .rho. is the density of the liquid (4) and .sigma. is the surface tension of the liquid (4), said centrifugal acceleration a being determined by a=2 D .pi..sup.2 n.sup.2, where D is the diameter of said outer surface (7); whereby a laminar disintegration of jets of said liquid leaving said plurality of bores is produced.
- 3. A device of atomizing a liquid (4) comprising; a hollow rotatable cylinder having a cylinder wall (1) with an inner surface (6), an outer surface (7), a bottom side closed by a bottom (2) and an upper side limited by a cover (3) with a central opening, a plurality of bores (5) each with a diameter D.sub.B being formed in the cylinder wall (1) between said inner and outer surfaces (6, 7), wherein the arrangement of said bores with a spacing t measured on said outer surface (7) determined by 1.1D.sub.B <t<5 D.sub.B, the ratio of the length L.sub.B of each bore (5) between said inner and outer surfaces (6, 7) to said bore diameter D.sub.B being at least 3 and said bore diameter D.sub.B being determined by 10<D.sub.B (.rho. a/.sigma.).sup.0.5 <200 for the production of droplets with an average sizes smaller than 100 .mu.m, where a represents the centrifugal acceleration of the cylinder at said outer surface .rho. is the density of the liquid (4) and .sigma. is the surface tension of the liquid (4), said centrifugal acceleration a being determined by a=2 D or .pi..sup.2 n.sup.2 n.sup.2 where D is the diameter of said outer surface (7); whereby a laminar disintegration of jets of said liquid leaving said plurality of bores is produced.
- 4. A process for atomizing a liquid (4) comprising the steps of; introduction of said liquid into a hollow, rotatable cylinder having a cylinder wall (1) with an inner surface (6) and an outer surface (7) and having a plurality of bores (5) formed between said inner and outer surfaces, and rotating said cylinder at a predetermined rotational speed, wherein the liquid (4) being evenly distributed on said inner cylinder surface (6) and over said bores (5) provides per bore, a volumetric flow rate V.sub.B of the liquid (4) determined by 1.0<V.sub.B (a.sup.3 .rho..sup.5 /.sigma..sup.5).sup.0.25 <16 and V.sub.B <3195 (.eta..sup.2 /a.rho..sup.2).sup.7/6 (a .rho. (D.sub.B).sup.0.5 /.eta.), where a represents the centifugal acceleration of the cylinder at said outer surface (7), .rho. is the density of the liquid (4), .sigma. is the surface tension of the liquid (4), and .eta. is the dynamic viscosity of the liquid (4), said centrifugal acceleration a being determined by a=2 D .pi..sup.2 n.sup.2, where D is the diameter of said outer surface (7), D.sub.B is the diameter of each bore (5), and n is said predetermined rotational speed, whereby a laminar disintegration of jets of said liquid leaving said plurality of bores is produced.
- 5. A process according to claim 4, characterized in that in addition to liquid (4) gas (8) is also introduced.
- 6. A process according to claim 4, characterized in that the liquid (4) is injected into the cylinder by means of a one-fluid nozzle (9).
- 7. A process according to claims 4, characterized in that the liquid (4) is injected into the cylinder through one or more rotating nozzles (9) or (10).
- 8. A process according to claim 4, characterized in that the nozzle produces a hollow conical spray jet.
- 9. A process according to claim 4, characterized in that
- V.sub.B <1410 (.eta..sup.2 /a .rho..sup.2).sup.7/6 (a .rho. .sqroot. D.sub.B /.eta.).
- 10.
- 10. A device according to claim 4, characterized by baffles (13) which are built into the cylinder.
- 11. Use of the device according to claim 4 for spray drying products.
- 12. Use of the device according to claim 4 for the manufacture of powders from melts.
- 13. Use of a device according to claim 4 for gas purification in scrubbing plants.
- 14. A device according to claim 4, characterized by at least 200 bores (5), apertures (27), (29), (32) or grooves (21).
- 15. A device for atomizing a liquid (4) comprising; a hollow rotatable cylinder having a cylinder wall (1) with an inner surface (6), an outer surface (7), a bottom side closed by a bottom (2) and an upper side limited by a cover (3) with a central opening, a plurality of bores (5) each having a diameter D.sub.B being formed in the cylinder wall (1) between said inner and outer surfaces (6, 7), wherein the arrangement of said bores with a spacing t measured on said outer surface (7) is determined by 1.1 D.sub.B <t<5 D.sub.B, the ratio of the length L.sub.B of each bore (5) between said inner and outer surfaces (6, 7) to said bore diameter D.sub.B being at least 3 and said bore diameter D.sub.B being determined by 10<D.sub.B (.rho. a/.sigma.).sup.0.5 <50 for the production of droplets with an average size equal to or greater than 100 .mu.m, where a represents the centrifugal acceleration of the cylinder at said outer surface, .rho. is the density of the liquid (4) and .sigma. is the surface tension of the liquid (4), said centrifugal acceleration a being determined by a=2 D n.sup.2 -n.sup.2, where D is the diameter of said outer surface (7), and at least 200 bores (5), apertures (27), (29), (32) or grooves (21).
- 16. A device according to claim 15, characterized by a rotationally symmetrical and in the cylinder concentrically arranged distribution body (11), the diameter of which increases towards the bottom (2).
- 17. A device according to claim 16, characterized by baffles (13) in form of concentrically arranged cylindrical perforated plates, the aperture diameter of which is bigger than the bores (5).
- 18. A device according to claim 15, characterized by a distribution body (11), which is fixed to the cylinder.
- 19. A device according to claim 15, characterized by a distribution body (11) which is independently rotatable with respect to the cylinder.
- 20. A device according to claim 15, characterized by a distribution body (11), which is provided with grooves (12) running in the peripheral direction.
- 21. A device according to claim 20, characterized by baffles (13) which are independently rotatable with respect to the cylinder.
- 22. A device according to claim 15, characterized in bores (5) or apertures (24) (27), (29), (32) having such directions that the extensions of their axes (14) over the exterior cylinder surface (7) all keep the same angle .alpha. in the range of 10.degree.<.alpha.<170.degree. in relation to the vector of the peripheral speed.
- 23. A device according to claim 15, characterized in bores (5) having such directions that the extensions of the bore axes (14) thereof over the exterior cylinder surface being inclined (7) by the angle .beta. in the range of O<.beta.<80.degree. in relation to the plane of rotation.
- 24. A device according to claim 15, wherein a laminar flow is produced for which the Reynold's figure Re.sub..delta. does not exceed 400.
- 25. A device for atomizing a liquid (4) comprising; a hollow rotatable cylinder having a cylinder wall (1) with an inner surface (6), an outer surface (7), a bottom side closed by a bottom (2) and an upper side limited by a cover (3) with a central opening, a plurality of bores (5) each with a diameter D.sub.B being formed in the cylinder wall (1) between said inner and outer surfaces (6, 7), wherein the arrangement of said bores with a spacing t measured on said outer surface (7) determined by 1.1 D.sub.B <t<5 D.sub.B, the ratio of the length L.sub.B of each bore (5) between said inner and outer surfaces (6, 7) to said bore diameter D.sub.B being at least 3 and said bore diameter D.sub.B being determined by 10<D.sub.B (.rho. a/.sigma.).sup.0.5 <200 for the production of droplets with an average size smaller than 100 .mu.m, where a represents the centrifugal acceleration of the cylinder at said outer surface .rho. is the density of the liquid (4) and .sigma. is the surface tension of the liquid (4), said centrifugal acceleration a being determined by a=2 D n.sup.2 -n.sup.2, where D is the diameter of said outer surface (7), and at least 200 bores (5), apertures (27), (29), (32) or grooves (21).
- 26. A device according to claim 25, characterized by at least 200 bores (5), apertures (27), (29), (32) or grooves (21).
- 27. A device according to claim 25, characterized in bores (5) or apertures (24) (27), (29), (32) having such directions that the extensions of their axes (14) over the exterior cylinder surface (7) all keep the same angle .alpha. in the range of 10.degree.<.alpha.<170.degree. in relation to the vector of the peripheral speed.
- 28. A device according to claim 25, characterized in bores (5) having such directions that the extensions of the bore axes (14) thereof over the exterior cylinder surface being inclined (7) by the angle .beta. in the range of O<.beta.<80.degree. in relation to the plane of rotation.
- 29. A device according to claim 25, wherein a laminar flow is produced for which the Reynold's Figure Re.sub..delta. does not exceed 400.
Priority Claims (1)
Number |
Date |
Country |
Kind |
43 08 842 |
Mar 1993 |
DEX |
|
Parent Case Info
This is a continuation of application Ser. No. 08/525,564 filed Nov. 14, 1995 now abandoned, Ser. No. 08/525,564 is the national stage of Pat/DK94/00113.
US Referenced Citations (4)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2 662 374 |
Nov 1991 |
FRX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
525564 |
|
|