CENTRIFUGAL PUMP
20170328366 · 2017-11-16
Inventors
Cpc classification
F04D9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D15/0005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K7/17
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D15/0011
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D1/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K7/17
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A centrifugal pump (7), with one or more pumping stages, includes a pressure controlled valve (15) inside the pump (7) for supporting self-priming, the pressure controlled valve (15). The pressure controlled valve (15) includes a pretensioned leaf spring (17) and a valve seat (18). The leaf spring (17) has an opened position and a closed position. In the open position the leaf spring (17) is distanced from the valve seat (18). In the closed position the leaf spring (17) closes the valve seat (18). The leaf spring (17) and valve seat (18) are arranged for soft closing.
Claims
1. A centrifugal pump comprising: one or more pumping stages; a pressure controlled valve inside the pump for supporting self-priming, the valve comprising a pretensioned leaf spring and a valve seat, the leaf spring having an opened position, in which the leaf spring is distanced from the valve seat and a closed position, in which the leaf spring closes the valve seat, the leaf spring and valve seat being arranged for dampened closing.
2. A centrifugal pump according claim 1, wherein the leaf spring has a preclosed position, in which the valve is partially closed.
3. A centrifugal pump according claim 2, wherein the leaf spring has at least one inherent stable position, which is the opened position and is forced into the preclosed and the closed positions by fluid forces acting on the leaf spring.
4. A centrifugal pump according claim 2, wherein the leaf spring has two inherent stable positions, the opened position and the closed position, wherein the leaf spring is held in the closed position by fluid forces.
5. A centrifugal pump according claim 1, wherein the leaf spring has a semi-stable position which is the pre-closed position.
6. A centrifugal pump according claim 1, further comprising a leaf spring support, wherein the valve seat is arranged off-center with respect to the leaf spring support.
7. A centrifugal pump according claim 2, wherein the valve seat has a stopping seat surrounding the valve seat, which contacts the leaf spring in the preclosed position.
8. A centrifugal pump according claim 1, further comprising a leaf spring support, wherein the valve seat is arranged in an angle between 5° to 20° with respect to a plane parallel to the leaf spring support.
9. A centrifugal pump according claim 1, wherein the valve seat is distanced from the leaf spring in the pre-closed position of the leaf spring.
10. A centrifugal pump according claim 1, further comprising a bypass in parallel to the pressure controlled valve, wherein the bypass is closed by the leaf spring in the preclosing position of the leaf spring.
11. A centrifugal pump according claim 1, with at least one shock absorber between the leaf spring and valve seat.
12. A centrifugal pump according claim 1, wherein the one or more pumping stages comprises a plurality of pumping stages to form a multistage centrifugal pump, wherein the pressure controlled valve is arranged between a suction side of the multistage centrifugal pump and a pressure side of the pump multistage centrifugal pump.
13. A domestic waterworks comprising a centrifugal pump, the centrifugal pump comprising: one or more pumping stages; and a pressure controlled valve inside the pump for supporting self-priming, the valve comprising a pretensioned leaf spring and a valve seat, the leaf spring having an opened position, in which the leaf spring is distanced from the valve seat and a closed position, in which the leaf spring closes the valve seat, the leaf spring and valve seat being arranged for dampened closing.
14. A domestic waterworks according claim 13, wherein the leaf spring has a preclosed position, in which the valve is partially closed.
15. A domestic waterworks according claim 14, wherein the leaf spring has at least one inherent stable position, which is the opened position and is forced into the preclosed and the closed positions by fluid forces acting on the leaf spring.
16. A domestic waterworks according claim 14, wherein the leaf spring has two inherent stable positions, the opened position and the closed position, wherein the leaf spring is held in the closed position by fluid forces.
17. A domestic waterworks according claim 13, wherein the leaf spring has a semi-stable position which is the pre-closed position.
18. A domestic waterworks according claim 13, further comprising a leaf spring support, wherein the valve seat is arranged off-center with respect to the leaf spring support.
19. A domestic waterworks according claim 14, wherein the valve seat has a stopping seat surrounding the valve seat, which contacts the leaf spring in the preclosed position.
20. A domestic waterworks according claim 13, further comprising a leaf spring support, wherein the valve seat is arranged in an angle between 5° to 20° with respect to a plane parallel to the leaf spring support.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In the drawings:
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0037] Referring to the drawings, a domestic water works 1 comprises a housing 2, in which all components of the water works are integrated and which has a foot 3, with which the water works 1 stands on a floor surface in a house. In
[0038] The lower part of the housing 2 is filled out by a multistage centrifugal pump 7 and an electric motor 8. Pump 7 and motor 8 are arranged in a lying manner with their shaft 9 in horizontal position in operation. The shaft 9 bears the rotor of the electric motor 8 on one part and impellers 10 of the centrifugal pump 7 on the other part.
[0039] The centrifugal pump 7 has four stages each comprising an impeller 10 and a surrounding diffuser forming the inner wall 11 of an annular space 12, whose outer wall is formed by the pump casing 13. In operation, water gets through the suction connection 4 into the pump casing 13, thus to the suction port of the pump 7, from there subsequently through the individual pump stages up to the last pump stage, from which the main delivery flow is redirected about 180° into the annular space 12 between the cylinder wall 11 and pump casing 13. From there the flow goes upward through a non-return valve 14 to the delivery connection 5 of the water works.
[0040] During operation when the necessary pressure at the delivery connection 5 has been obtained and no further fluid flow is needed the electric motor 8 is turned off which makes the pump 7 stop. The pressure on the delivery connection 5 is held by the closed non-return valve 14. However, the head of water to the suction connection 4 may be interrupted in this situation. For recovering the water head when starting the pump again it is necessary that there is enough water in the pump stages, otherwise self-priming of the pump 7 will not be possible. When the pump 7 has stopped the water in the pump stages will level between all pump stages. This pressure controlled valve 15 is normally opened when the differential pressure is low, so that fluid can pass through the bypass 16. When the pump 7 runs the water in pump stages will recirculate through the bypass valve 16, during this process the head of water will be restabilized, and finally the differential pressure between suction side and pressure side is high and closes the valve 15.
[0041] As this bypass 16 has to be closed during operation of the pump 7 this valve 15 is arranged to be closed by the fluid running through the bypass 16 and the pressure between the pressure side and the suction side of the centrifugal pump 7 in operation. If the centrifugal pump 7 is not in operation and the pressure drops down then the valve 15 will open the bypass 16. This valve 15 is a leaf spring valve comprising a leaf spring 17 and a valve seat 18 at the end of the bypass 16. The leaf spring 17 can be best seen from
[0042] To avoid this loud clack noise when the leaf spring valve 15 closes according to this invention the leaf spring valve 15 is arranged for soft closing—dampened closing—wherein the leaf spring valve 15 includes dampening means as shown by way of example according to the embodiments shown in the
[0043] In the embodiment of the dampening means according to
[0044] The embodiment of the dampening means according to
[0045] The embodiment of a leaf spring valve 15.3 with of the dampening means according to
[0046] In the embodiment of the dampening means according to
[0047] In the embodiment of the leaf spring valve 15.5 with the dampening means according to
[0048]
[0049] The afore-mentioned embodiments with the dampening means according to the
[0050] While specific embodiments of the invention have been shown and described in detail to illustrate the application of the principles of the invention, it will be understood that the invention may be embodied otherwise without departing from such principles.
TABLE-US-00001 APPENDIX List of reference designations 1 domestic water works 2 housing 3 foot of the housing 4 suction connection 5 delivery connection 6 drain opening 7 centrifugal pump 8 electric motor 9 shaft 10 impeller 11 cylinder wall 12 annular space 13 pump casing 14 non-return valve 15 leaf spring valve 15.1 leaf spring valve FIG. 4 15.2 leaf spring valve FIG. 5 15.3 leaf spring valve FIG. 6 15.4 leaf spring valve FIG. 7 15.5 leaf spring valve FIG. 8 15.6 leaf spring valve FIG. 9 16 bypass 16.2 bypass FIG. 5 17 leaf spring 18 valve seat 18.2 valve seat FIG. 5 18.3 valve seat FIG. 6 18.4 valve seat FIG. 7 19 projection 20 projection 21 projection 22 middle of bypass 23 middle of leaf spring 24 offset 25 further bypass 26 inner part 27 shock absorbers 28 angle 29 plane a opened position b preclosed position c closed position