Radial compressor
10947990 ยท 2021-03-16
Assignee
Inventors
- Hannes Benetschik (Munich, DE)
- Sebastian Spengler (Wehringen, DE)
- Matthias Strauss (Schrobenhausen, DE)
Cpc classification
F05D2250/71
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/667
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/90
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02C6/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/96
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/4233
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/4213
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/68
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02C6/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A radial compressor of an exhaust gas turbocharger, with a rotating impeller, a fixed housing; a main flow passage defined by the housing for feeding a medium to be compressed towards the impeller; a secondary flow chamber arranged radially outside the main flow passage, which is separated from the main flow passage by a contour wall and is connected to the main flow passage via a secondary flow opening; struts extending in the secondary flow chamber, via which the contour wall is connected to the housing. The struts are curved having a first connecting section of the contour wall that extends in the radial direction and a second connecting section on the housing that extends in the axial direction.
Claims
1. A radial compressor, of an exhaust gas turbocharger, comprising: an impeller configured to rotate; a fixed housing; a main flow passage defined by the housing configured to feed a medium to be compressed in a direction of the impeller; a contour wall; a secondary flow chamber arranged radially outside the main flow passage, connected to the main flow passage via a first flow opening, which is separated from the main flow passage by the contour wall and which in a region of the impeller is connected to the main flow passage via a secondary flow opening; and struts that extend in the secondary flow chamber, via which a first connection section of a respective strut is connected to the contour wall and a second connection section of the respective strut is connected to a radially extending portion of the housing whereby the contour wall is connected to the housing; wherein the struts are curved such that as seen in a meridional section the first connection section of the respective strut on the contour wall extends in a radial direction or predominantly in the radial direction and the second connection section of the respective strut on the housing extends in an axial direction or predominantly in the axial direction.
2. The radial compressor according to claim 1, wherein seen in the meridional section a longitudinal center axis of the first connection section includes with the radial direction an angle of at least one of: maximally 20; maximally 10; and maximally 5.
3. The radial compressor according to claim 2, wherein the angles, which seen in an axial section include respective adjacent struts, have a non-integral divisor to 360.
4. The radial compressor according to claim 1, wherein seen in the meridional section a longitudinal center axis of the second connection section includes with the axial direction an angle of at least one of maximally 20; maximally 10; and maximally 5.
5. The radial compressor according to claim 4, wherein the angles, which seen in the axial section include respective adjacent struts, have a non-integral divisor to 360.
6. The radial compressor according to claim 1, wherein in an axial section the first connection section and the second connection section of the respective strut are offset relative to one another in a circumferential direction.
7. The radial compressor according to claim 1, wherein in an axial section the struts are unevenly distributed in a circumferential direction, such that in a circumferential section, which faces a tongue of a spiral housing, a lower number of struts is formed than on a circumferential section facing away from the tongue of the spiral housing.
8. The radial compressor according to claim 1, wherein the housing comprises: a suction section arranged, as seen in a flow direction of the medium to be compressed, upstream of the impeller; an insert piece section extending in a region of the impeller; and a spiral housing section arranged downstream of the impeller.
9. The radial compressor according to claim 8, wherein at least the spiral housing section is formed as a separate assembly of the housing.
10. The radial compressor according to claim 8, wherein the suction section and the insert piece section are formed as a separate assembly of the housing.
11. The radial compressor according to claim 8, wherein the struts, with their second connecting sections, act on the suction section of the housing.
12. The radial compressor according to claim 1, wherein the second connection section of the respective strut that extends in the axial direction or predominantly in the axial direction connects to the housing upstream of the first flow opening.
13. The radial compressor according to claim 1, wherein the second connection section of the respective strut that extends in the axial direction or predominantly in the axial direction connects to the housing at least in part at a suction section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Preferred further developments of the invention are obtained from the subclaims and the following description. Exemplary embodiments of the invention are explained in more detail by way of the drawing without being restricted to this. There it shows:
(2)
(3)
DETAILED DESCRIPTION OF THE PRESENTLY PREFERRED EMBODIMENTS
(4)
(5) A radial compressor 10 comprises a rotating impeller 11 with multiple moving blades 12. Furthermore, a radial compressor 10 comprises a fixed housing 13. Of the fixed housing 13 a suction section 14 arranged upstream of the rotating impeller 11 seen in the flow direction of a medium to be compressed, an insert piece section 15 positioned in the region of the impeller 11, as well as a spiral housing section 16 arranged downstream of the impeller 11 are shown in
(6) Accordingly in
(7) It is pointed out that in contrast with the shown exemplary embodiment it is possible that the suction section 14 and the insert piece section 15 are formed in one piece and accordingly are provided by a monolithic assembly. It is possible, furthermore, that the spiral housing section 16 is also formed in one piece together with the insert piece section 15 and the suction section 14 and accordingly monolithically.
(8) The housing 13 of the radial compressor 10 defines a main flow passage 17 for a medium to be compressed to conduct, via the main flow passage 17, the medium to be compressed in the direction of the impeller 11. Outside of the main flow passage 17, the housing 13 defines a secondary flow chamber 18. A contour wall 19, which is also referred to as annular web, separates the main flow passage 17 from the secondary flow chamber 18.
(9) The secondary flow chamber 18 extends from a section upstream of the impeller 11 as far as into the region of the impeller 11. Accordingly,
(10) The struts 22 are curved, in such that seen in the meridional section a first connecting section 23 of the struts 22 extends on the contour wall 19 in the radial direction or predominantly in the radial direction, and that a second connecting section 24 of the strut 22 located opposite extends on the housing 10, in the shown exemplary embodiment on the suction section 14, in the axial direction or predominantly in the axial direction, namely in each case seen in the meridional section.
(11) An extension predominantly in the radial direction of the first connecting section 23 of the strut 22 on the contour wall 19 means that a longitudinal center axis 25 of this first connecting section 23 includes with the radial direction an angle of maximally 20, preferably of maximally 10, particularly preferably of maximally 5. An extension of the second connecting sections 24 of the respective strut 22 predominantly in the axial direction means that, seen in the meridional section, a longitudinal center axis 26 of the respective second connecting section 24 of the respective strut 22 includes with the axial direction an angle of 20, preferably of maximally 10, particularly preferably of maximally 5.
(12) Struts 22 curved in this manner, which extend in the secondary flow chamber 18, ensure an unobstructed flow through the secondary flow chamber 18 and thus improve the characteristic map stability, in particular pump stability of the radial compressor. Furthermore, the same improve the structural stability of the radial compressor, so that the same is exposed to a lower vibration excitation and thus lower vibration risk.
(13) Seen in the axial section of
(14) Although this offset of the first connecting section 23 and second connecting section 24 in the circumferential direction is preferred it is pointed out that seen in the axial section in the region of each strut 22, the connecting sections 23 and 24 can also be positioned in the same circumferential position.
(15) As is evident from
(16) Through the uneven distribution of the struts 22 in the circumferential direction as seen in the axial section, at least some of the directly adjacent struts 22 include an angle other than other directly adjacent struts 22. It is true in each case that the angles, which seen in the axial section include adjacent struts in each case, have a non-integral divisor to 360. Accordingly, no angles between directly adjacent struts are formed, of which 360 is an integral multiple. By way of this, the structural stability can also be improved, in particular the risk of a vibration excitation for the radial compressor is reduced.
(17) Accordingly, a radial compressor with improved characteristic map stability and accordingly optimised operating behaviour is provided by the invention. In particular, the pump stability can be increased and the susceptibility to vibration of the radial compressor reduced. The secondary flow chamber can be flowed through in a low-loss manner. The struts 22 are contoured curved, with the connecting sections 23, 24 extending in different directions on the contour wall 19 and on the housing 10, in particular on the suction section 14 of the housing 10.
(18) Thus, while there have shown and described and pointed out fundamental novel features of the invention as applied to a preferred embodiment thereof, it will be understood that various omissions and substitutions and changes in the form and details of the devices illustrated, and in their operation, may be made by those skilled in the art without departing from the spirit of the invention. For example, it is expressly intended that all combinations of those elements and/or method steps which perform substantially the same function in substantially the same way to achieve the same results are within the scope of the invention. Moreover, it should be recognized that structures and/or elements and/or method steps shown and/or described in connection with any disclosed form or embodiment of the invention may be incorporated in any other disclosed or described or suggested form or embodiment as a general matter of design choice. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto.