PELLET DRYER WITH ADDITIONAL BLOWER
20180106541 ยท 2018-04-19
Assignee
Inventors
- Louis Cody Shortt (Vinton, VA, US)
- Richard Borland Thrasher, Jr. (Troutville, VA, US)
- Kerry Patrick Morris (Troutville, VA, US)
Cpc classification
F26B21/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B11/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B3/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B21/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B2200/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B5/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F26B21/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B17/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a pellet dryer (1) comprising: a housing (2), an inlet for feeding fluid flushed pellets and two separate outlets (3, 10) for discharging the dried pellets and the fluid, a vertical bladed rotor (4) for separation of the fluid by a screen (5) toward outside of the screen (5) surrounding the bladed rotor (4) and for a vertical acceleration and separation of the pellets by the blades (6) of the bladed rotor (4) and for continuously drying the vertically accelerated pellets inside the screen (5) of the housing (2), wherein an additional blower (18) is provided comprising a fan on top of the housing (2) positioned in the periphery of the bladed rotor (4) and connected with a ductwork (20) inside the housing (2) between an inner surface (16) of the housing (2) and an outer surface (38) of a framework (39) of the screen (5), wherein the rotational speed of the additional blower (18) is controlled by a central controller unit of the pellet dryer (1) independently of the rotational speed of the bladed rotor (4).
Claims
1. A pellet dryer (1) comprising: a housing (2), an inlet for feeding fluid flushed pellets and two separate outlets (3, 10) for discharging the dried pellets and the fluid, a vertical bladed rotor (4) for separation of the fluid by a screen (5) toward outside of the screen (5) surrounding the bladed rotor (4) and for a vertical acceleration and separation of the pellets by the blades (6) of the bladed rotor (4) and for continuously drying the vertically accelerated pellets inside the screen (5) of the housing (2), characterized in that an additional blower (18) is provided comprising a fan on top of the housing (2) positioned in the periphery of the bladed rotor (4) and connected with a ductwork (20) inside the housing (2) between an inner surface (16) of the housing (2) and an outer surface (38) of a framework (39) of the screen (5), wherein the rotational speed of the additional blower (18) is controlled by a central controller unit of the pellet dryer (1) independently of the rotational speed of the bladed rotor (4).
2. The pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises a tube (19) with a circular cross sectional area (21).
3. A pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises a tube (19) with a four-sided cross sectional area (24).
4. The pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises a tube (19) with a trapezoidal cross sectional area (25).
5. The pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises a tube (19) with said four-sided cross sectional area (24) comprising two pairs each having walls (a, a: b, b) arranged opposite to each other, wherein a first pair of walls (a, a) arranged opposite to each other comprising two curved walls (a, a), wherein one wall (a) is adapted to the curved inner surface of the housing (16) and the other one of the opposite to each other arranged curved walls (a) is adapted to the outer surface (38) of a framework (39) of the screen (5) and wherein the second pair of walls (b, b) arranged opposite to each other comprising straight surfaces.
6. The pellet dryer (1) according to claim 5 characterized in that the straight surfaces of the second pair of walls (b, b) of the ductwork (20) are arranged in an radial direction.
7. The pellet dryer (1) according to claim 5 characterized in that the straight surfaces (b, b) of the second pair of walls (b. b) of the ductwork (20) are arranged parallel to each other.
8. The pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises a length (1) between one third of the total internal vertical length (L) of the housing (2) and three quarter of the total internal vertical length (L) of the housing (2).
9. The pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises a length (1) of half of the internal vertical length (L) of the housing (2).
10. The pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises a telescopic structure (34) comprising at least two parts partly moveably nested into each other.
11. The pellet dryer (1) according to claim 1 characterized in that the additional drying air flow of the additional blower (18) is directed contrarious to the direction of movement of the pellets.
12. The pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises an outlet opening (26) with an inclined open area (27) in respect to the vertical direction of the axis (12) of the bladed rotor (4) comprising an angle of inclination between 30 and 60 preferably between 35 and 50.
13. The pellet dryer (1) according to claim 1 characterized in that the ductwork (20) comprises an outlet opening (26) with an inclined open area (27) in respect to the vertical direction of the axis (12) of the bladed rotor (4) comprising an angle of inclination of =45.
14. The pellet dryer (1) according to claim 1 characterized in that the additional blower (18) comprises an air compressor providing pressurized air into the ductwork (20) having outlet nozzles (29) inclined by the angle up to 90 in a range of 15 to 90 in respect to the vertical axes of the bladed rotor preferably 30 to 50 most preferably 45.
15. The pellet dryer (1) according to claim 1 characterized in that the a guidance plate (40) is provided above the upper end (37) of the screen (5) additionally to the additional blower (18) with ductwork (20) in the housing (2) at the outlet (10) of the housing (2) for dried pellets.
16. The pellet dryer (1) according to claim 1 characterized in that an outlet opening (35) toward the inner top (9) of the housing (2) at an inner cylindrical side surface (16) of the housing (2) distant from the screen (5) in a radially outward direction and an outlet duct (20) connected to the opening (35), wherein the outlet duct (36) is attached to the opening (35) by an acute angle () in respect to the central axis (12) of the rotor (4) and wherein the outlet guidance plate (40) of curved shape is provided close to the top (9) of the housing (2) inside the housing (2) in a transition region between the end (3) of the screen and the outlet duct (36) wherein the outlet guidance plate (40) extends from a central position above the screen (5) through the outlet opening (35) into the outlet duct (36).
Description
SHORT DESCRIPTION OF THE DRAWINGS
[0007] The present disclosure will hereafter be described in conjunction with the following drawing figures, wherein like numerals denote like elements, and wherein:
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[0021]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0022] Referring now to the drawings FIGS, 1 and 2 illustrate two different views of a centrifugal pellet dryer 1 of the vertical type according to an embodiment of the invention. The pellet dryer 1 comprises a vertical housing 2 of generally cylindrical configuration and supported in any suitable manner. A slurry of pellets and fluid enters the pellet dryer 1 through a slurry inlet 30 shown in
[0023] The remaining moisture and fluid is separated from the pellets by centrifugal force applied to the remaining moisture and fluid by a vertically arranged bladed rotor 4 and a separating central screen 5 shown in
[0024] As shown in
[0025] The rotational speed of the fan 14 of the additional blower 18 can be controlled by a known and not shown central controller unit of the pellet dryer 1 independently of the rotational speed of the bladed rotor 4 since the additional blower comprises an independent electric motor 18 as driver. Thus the additional blower 18 with ductwork 20 in the housing 2 provides advantageously an independent blowing of drying air to additionally control the drying of the pellets independently in respect to the main rotational speed of the motor 11 of the bladed rotor 4 which has to be optimized in respect to an upward accelerating of the pellets by the blades 6 of the bladed rotor 4, which in addition dictates the amount of the contrarious downward drying air flow in a contrarious downward direction to the upward accelerated pellets which is difficult to balance in an optimized way for both, the optimization of acceleration and optimization of drying the pellets by an optimized airflow.
[0026] Due to the new additional blower 18 the drying and separating process of pellets out of a slurry of pellets and fluid can be optimized in a unique and simple way, since it is advantageously possible not only to increase the drying air flow, but also optimize the adjustment of the interference direction of additional air flow and main air flow by an optimized design of the ductwork 20. In one embodiment the ductwork 20 comprises a tube 19 as shown in
[0027] In another embodiment of the present invention a guidance plate 40 is provided at the second outlet 10 of the housing 2 for dried pellets above an upper end 37 of the screen 5 additionally to the additional blower 18 with ductwork 20 in the housing 2 as shown in
[0028] In a further embodiment the ductwork 20 of the additional blower 18 comprises a length 1 as shown in
[0029] In a further embodiment the ductwork 20 comprises a tube 19 with a four-sided cross sectional area 24 as shown in
[0030]
[0031] The
[0032] In a further embodiment of the invention the ductwork 20 comprises an outlet opening 26 with an inclined open area 27 in respect to the direction of the central axis 12 of the bladed central rotor 4 as shown in the
[0033]
[0034]
[0035] Another embodiment of the present invention comprises as an additional blower 18 an air compressor providing pressurized air into the ductwork 20 having outlet nozzles 29 inclined by the angle up to 90 in a range of 15 to 90 in respect to the axes of the bladed rotor preferably 30 to 50 most preferably 45. The air stream of nozzles 29 is stronger and more concentrated into a major direction than the inclined open outlet areas shown in the previous
[0036] The forgoing detailed description of embodiments of the invention has been presented for purposes of illustration and description, but it is not intended to be exhaustive or limited to the invention as disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the invention defined by the claims, which includes known equivalents and foreseeable equivalents at the time of filing the application. The embodiments were chosen and described in order to best explain the principles of the invention and then practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.
LIST OF REFERENCE SIGNS
[0037] 1 centrifugal pellet dryer [0038] 2 vertical housing [0039] 3 first outlet of housing for fluid [0040] 4 bladed rotor [0041] 5 central screen [0042] 6 blades of bladed rotor [0043] 7 sleeve [0044] 8 outer top of housing [0045] 9 inner top of housing [0046] 10 second outlet of housing for pellets [0047] 11 main motor [0048] 12 central axis of fan and rotor [0049] 13 cover [0050] 14 adapter additional blower [0051] 15 support adapter [0052] 16 inner surface of the housing [0053] 17 outer surface of the central screen [0054] 18 additional blower [0055] 19 tube of ductwork [0056] 20 ductwork [0057] 21 circular cross sectional area [0058] 24 four-sided cross sectional area [0059] 25 trapezoidal [0060] 26 outlet opening of the ductwork [0061] 27 inclined open area [0062] 28 air flow direction [0063] 29 outlet nozzles [0064] 30 slurry inlet [0065] 31 separator [0066] 32 partially screened tube [0067] 33 inclined screen of the tube [0068] 34 telescopic tube [0069] 35 outlet opening [0070] 36 outlet duct of pellets [0071] 37 end of screen [0072] 38 outer surface of the framework of the screen [0073] 39 framework of central screen [0074] 40 guidance plate [0075] a, a pair of curved walls [0076] b, b pair of straight walls [0077] D diameter of circular cross section [0078] l length of ductwork within the housing [0079] L inner length of housing [0080] inclination angle of outlet opening in respect to the central axis [0081] inclination angle of nozzles in respect to the central axis