Solid-wall scroll centrifuge with front wall with discharge opening having a weir edge and an energy recovery device defining a discharge pipe on the outside of the front wall and in front of the discharge opening having the weir edge
10357784 ยท 2019-07-23
Assignee
Inventors
Cpc classification
B04B2001/2083
PERFORMING OPERATIONS; TRANSPORTING
B04B1/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A solid-bowl screw centrifuge has a centrifuge drum that can rotate about a longitudinal axis during operation. The centrifuge drum has a front wall with at least one discharge opening for discharging clarified product from the centrifuge drum. A weir edge is formed at the discharge opening radially toward the outside. An energy recovery device is provided for recovering energy from the clarified product that is being discharged. The energy recovery device defines a discharge pipe through which the clarified product passes as the clarified product flows out. The energy recovery device is situated on the outside of the front wall and in front of the discharge opening that has the weir edge.
Claims
1. A solid-bowl screw centrifuge (10) having a centrifuge drum (12) that can rotate about a longitudinal axis (18) during operation, the centrifuge drum (12) having a front wall (14) with at least one discharge opening (16) for discharge of clarified product (24) out of the centrifuge drum (12) a weir gate (20) defining a plate attached to the front wall (14) and having a weir edge (22) delimiting the discharge opening (16) toward the outside radially, and an energy recovery device (28; 42) for recovering energy from the clarified discharged product (24), the energy recovery device (42) defining a discharge pipe (44) disposed outside axially on the weir gate (20) and through which the clarified product (24) passes as the clarified product (24) flows out, the discharge pipe (44) of the energy recovery device (42) being situated on the outside of the front wall (14) and directly in front of the discharge opening (16) that has the weir edge (22) such that the discharge pipe (44) extends circumferentially completely across the opening and at a position spaced axially outward from the opening.
2. The solid-bowl screw centrifuge according to claim 1, wherein, with the discharge pipe (44), the clarified discharged product (24) is deflected opposite a respective direction of rotation (36) of the centrifuge drum (12).
3. The solid-bowl screw centrifuge according to claim 1, wherein the discharge pipe (44) has at least one section having an essentially straight flow path (50) that is set at an inclination by an angle (54) of 4 to 28 radially inward to a tangential direction (52) at the discharge opening (16).
4. The solid-bowl screw centrifuge according to claim 1, wherein the discharge pipe (44) has at least one section with an essentially straight flow path (58), in which the longitudinal axis (18) of the centrifuge drum (12) is set at an inclination at an angle (60) between 45 and 85 with respect to the straight flow path (58).
5. The solid-bowl screw centrifuge according to claim 1, wherein the discharge pipe (44) has a discharge mouth (48) with a direction of flow (62) that is set at an inclination with respect to the longitudinal axis (18) of the centrifuge drum (12) at an angle (64) between 70 and 90.
6. The solid-bowl screw centrifuge according to claim 1, wherein the discharge pipe (44) is designed with a flow cross section (56) of a constant size in the direction of flow of the clarified discharged product (24).
7. The solid-bowl screw centrifuge according to claim 1, wherein the discharge pipe (44) is designed with a reduced flow cross section (56) in the direction of flow of the clarified discharged product (24).
8. The solid-bowl screw centrifuge according to claim 1, wherein the discharge pipe (44) is designed with a round flow cross section (56).
9. The solid-bowl screw centrifuge according to claim 1, wherein the discharge pipe (44) is designed with a rectangular flow cross section (56).
10. The solid-bowl screw centrifuge according to claim 1, wherein the discharge pipe (44) has an exterior wall (66) facing in a direction of rotation (36).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(23) An energy recovery device 28 according to the prior art is situated on the outside axially on the weir gate 20 behind, i.e., downstream from the weir edge 22 in the direction of flow of the clarified product 24. This energy recovery device 28 is designed as a discharge trough, i.e., a discharge channel 30, which has a flat bottom surface 32 extending tangentially at the height of the weir edge 22. A deflecting surface 34, which, as part of the discharge channel 30 perpendicular to the bottom surface 32, extends in an arc shape in front of the region of the discharge opening 16 that is open as seen in the longitudinal direction according to the prior art.
(24) The deflecting surface 34 deflects the clarified product 24 that flows down axially through the discharge opening 16 on the inside radially below the weir edge 22 in a direction of inflow 38 is deflected in a direction tangential to a discharge direction 40. Meanwhile the centrifugal drum 12 rotates in one direction of rotation 36, while the clarified product 24 is deflected by the deflecting surface 34, so that it emerges tangentially from the energy recovery device 28 in the opposite direction from this direction of rotation 36. On its exit, the clarified product 24 is repelled by the centrifuge drum 12, thereby transferring a portion of its momentum to the centrifuge drum 12 and contributes toward energy recovery on the centrifuge drum 12. This repulsion is mitigated by the internal fluid friction in the clarified product 24 and by the fact that the centrifuge drum 12 continues to rotate in the direction of rotation 36. The centrifuge drum 12 therefore partially evades the repulsion.
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(26) With regard to its cross section, the discharge pipe 44 is situated directly in front of the region of the otherwise open discharge opening 16, so that the opening is completely covered by the discharge pipe 44 on the outside. Therefore, no air flow can act from the outside during the passage of the clarified product past the discharge opening 16 and therefore this yields a particularly uniform flow, in particular a strictly laminar flow, with the corresponding purity of the clarified product discharged. The discharge pipe 44 is situated at the height and/or radius of the weir edge 2, so that the product thereby being discharged undergoes practically no change in position in the radial direction and there are no energy losses accordingly.
(27) On its circumference, the discharge pipe 44 is completely closed and forms a tubular line with an inflow mouth 46 in front of the discharge opening 16 and a discharge mouth 48 on its other exterior end. The outer part of this pipe on the outside radially with respect to the longitudinal axis 18 acts like a discharge trough, i.e., a discharge channel, and at the same time is closed on the inside radially with respect to the longitudinal axis 18 of the centrifuge drum 12. Therefore, the product discharged through the energy recovery device 42 is also protected against external aerodynamic influences on the inside of the discharge pipe 44. The product is deflected out of the axial direction homogeneously, without turbulence and in a targeted manner, i.e., the incoming flow direction 38 essentially into the tangential direction, i.e., the discharge direction 40.
(28) With the discharge pipe 44, the product discharged is largely held at the radius of the weir edge 22 during the deflection process, wherein the discharge pipe 44 has a straight flow path 50, as seen in a side view (
(29) In the exemplary embodiment of an energy recovery device 42 according to
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(32) The energy recovery device 42 shown in
(33) Finally, with the exemplary embodiments according to
(34) In the exemplary embodiment according to
(35) In conclusion, it should be pointed out that all the features mentioned in the patent application documents and in particular in the dependent claims, which should have a formal reference back to one or more specific claims, even individually or in any combination, are entitled to independent protection either individually or in any combination.
LIST OF REFERENCE NUMERALS
(36) 10 solid-bowl screw centrifuge 12 centrifuge drum 14 front wall 16 discharge opening 18 longitudinal axis of the centrifuge drum 20 weir gate 22 weir edge 24 clarified product 26 pond depth 28 energy recovery device according to the prior art 30 discharge channel according to the prior art 32 bottom surface according to the prior art 34 deflecting surface according to the prior art 36 direction of rotation 38 inflow direction of the clarified product (axially) 40 discharge direction of the clarified product (tangentially) 42 energy recovery device according to the invention 44 discharge pipe 46 inflow mouth 48 discharge mouth 50 straight flow path in a side view 52 tangential direction 54 angle between tangential direction and flat flow path in a side view 56 flow cross section 58 straight flow path in a longitudinal section 60 angle between longitudinal axis and flat flow path in the longitudinal section 62 direction of flow at the discharge mouth 64 angle between the longitudinal axis and the direction of flow at the discharge mouth 66 exterior wall of the discharge pipe facing in the direction of rotation 68 aerodynamic exterior wall shape