IMPELLER WAKE VORTEX DISSIPATION DEVICE UNDER STALL CONDITION OF MIXED FLOW PUMP
20240018969 ยท 2024-01-18
Assignee
Inventors
- Wei LI (Zhenjiang, CN)
- Leilei JI (Zhenjiang, CN)
- Ling ZHOU (Zhenjiang, CN)
- Yong ZHU (Zhenjiang, CN)
- Sizhuo MA (Zhenjiang, CN)
- Handong QI (Zhenjiang, CN)
Cpc classification
F04D11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An impeller wake vortex dissipation device under stall condition of a mixed flow pump includes a guide vane and a wake vortex dissipation device. The pump is evenly divided into n guide vane channels by N evenly distributed guide vanes. A wake vortex dissipation device is set in each guide vane channel, and one end of the wake vortex dissipation device is fixedly connected to the inner wall of the pump body. Therefore, each wake vortex dissipation device is located in the middle and upper part of the guide vane channel and does not occupy the lower guide vane channel; the wake vortex dissipation device is provided with a dissipative hole pair, which are used to dissipate the energy of the wake vortex of the impeller.
Claims
1. An impeller wake vortex dissipation device under stall condition of a mixed flow pump, comprising a guide vane and a wake vortex dissipation device, wherein an inside of the mixed flow pump is evenly divided into N guide vane channels by N evenly distributed guide vanes; the wake vortex dissipation device is set in each guide vane channel, and one end of the wake vortex dissipation device is fixedly connected to the inner wall of the pump body, so each wake vortex dissipation device is located in L middle and upper part of each guide vane channel and does not occupy a lower guide vane channel; and the wake vortex dissipation device is provided with a dissipative hole pair, which is used to dissipate energy of an impeller wake vortex.
2. The device according to claim 1, wherein the wake vortex dissipation device comprises a fixing part and an action part; the dissipative hole pair is arranged at the action part for dissipating the energy of the impeller wake vortex; the fixing part is vertically arranged along a chord long side of the action part, and the fixing part is fixedly connected with a housing body of the mixed flow pump by fasteners.
3. The device according to claim 1, wherein between two adjacent guide vanes, a concave surface of the wake vortex dissipation device is opposite to a pressure surface of one of the two adjacent guide vanes, and ja convex surface of the wake vortex dissipation device is opposite to a suction surface of another of the two adjacent guide vanes.
4. The device according to claim 3, wherein a distance L1 between the concave surface and the pressure surface opposite to the concave surface and a distance L2 between the convex surface and the suction surface opposite to the convex surface of the wake vortex dissipation device are less than 10% of a width of each guide vane channel.
5. The device according to claim 4, wherein several rows of through hole groups are arranged on the action part of the wake vortex dissipation device along a radial direction; all through holes in a same row of through hole groups are set in a same direction, and the through holes in two adjacent rows of through hole groups are set in the opposite direction at such intervals.
6. The device according to claim 5, wherein the through holes close to each other in the two adjacent rows of through hole groups form a dissipative hole-pair, and central axes of the two through holes form the dissipative hole pair intersect the convex surface of the wake vortex dissipation device, and an included angle of the central axes is an acute angle.
7. The device according to claim 5, wherein diameters of the through holes on the wake vortex dissipation device are the same.
8. The device according to claim 5, wherein a spacing between two through holes in each dissipative hole pair is not exceed 3 times the through hole diameter, and the spacing between adjacent dissipative hole pairs shall not be greater than the through hole diameter.
9. The device according to claim 1, wherein the action part of the wake vortex dissipation device is equally thick along a mainstream direction, and a thickness is not less than 5 mm.
10. The device according to claim 9, wherein during installation, an inlet edge of the wake vortex dissipation device is flush with an inlet edge of the guide vane, or an axial plane projection of the inlet edge of the wake vortex dissipation device falls within a chord length range from the inlet edge of the guide vane to 20% of the guide vane.
11. The device according to claim 2, wherein the action part of the wake vortex dissipation device is equally thick along a mainstream direction, and a thickness is not less than 5 mm.
12. The device according to claim 3, wherein the action part of the wake vortex dissipation device is equally thick along a mainstream direction, and a thickness is not less than 5 mm.
13. The device according to claim 4, wherein the action part of the wake vortex dissipation device is equally thick along a mainstream direction, and a thickness is not less than 5 mm.
14. The device according to claim 5, wherein the action part of the wake vortex dissipation device is equally thick along a mainstream direction, and a thickness is not less than 5 mm.
15. The device according to claim 6, wherein the action part of the wake vortex dissipation device is equally thick along a mainstream direction, and a thickness is not less than 5 mm.
16. The device according to claim 7, wherein the action part of the wake vortex dissipation device is equally thick along a mainstream direction, and a thickness is not less than 5 mm.
17. The device according to claim 8, wherein the action part of the wake vortex dissipation device is equally thick along a mainstream direction, and a thickness is not less than 5 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
[0024] In the figures: 1. guide vane hub, 2. guide vane, 3. wake vortex dissipation device, 4. threaded hole, 5. A through hole, 6. B through hole, 7. dissipation hole pair, 8. impeller, 9. C through hole, 10. boss, 11 shell body.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] To make the object, technical solutions and advantages of the present invention more clearly understood, the present invention is described in further detail in the future in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are intended to explain the present invention only and are not intended to limit it.
[0026] An impeller wake vortex dissipation device under stall condition of a mixed flow pump includes a guide vane 2, a wake vortex dissipation device 3 and a shell body 11. N guide vanes 2 are evenly distributed on the guide vane hub 1; guide vanes 2 evenly divide the inside of the pump into n flow channels. A wake vortex dissipation device 3 is arranged in each channel divided by the guide vane 2, as shown in
[0027] More specifically, the structure of the wake vortex dissipation device 3 is shown in
[0028] As shown in
[0029] As shown in
[0030] The fixed part of the wake vortex dissipation device 3 is equally thick along the mainstream direction, but the thickness of the fixed part is greater than that of the action part. The fixed part of the wake vortex dissipation device 7 is provided with a threaded hole 4 along the circumferential direction, and a through hole C9 is arranged at the position corresponding to the fixed part of the housing 11. At the same time, a boss 10 is processed on the outside of the through hole of the housing body 11 to fix the fixing part and the housing body 11 by bolts.
[0031] As for the installation position of the wake vortex dissipation device 3, the inlet edge of the wake vortex dissipation device 3 is flush with the inlet edge of the guide vane 2, or the axial plane projection of the inlet edge of the wake vortex dissipation device 3 falls within the chord length range of 20% of the guide vane 2 from the inlet edge of the guide vane 2. After the wake vortex dissipation device 3 is installed in each guide vane, it is necessary to ensure that the axial projection of each wake vortex dissipation device 3 coincides with each other.
[0032] The above examples are only used to illustrate the design ideas and features of the present invention, and its purpose is to enable a person skilled in the art to understand the content of the present invention and implement it accordingly. Therefore, any equivalent changes or modifications based on the principles and design ideas revealed by the present invention are within the scope of protection.