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EP2181268B1 - Radial compressor with a diffuser for use in a turbocharger - Google Patents

Radial compressor with a diffuser for use in a turbocharger Download PDF

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Publication number
EP2181268B1
EP2181268B1 EP08785006.1A EP08785006A EP2181268B1 EP 2181268 B1 EP2181268 B1 EP 2181268B1 EP 08785006 A EP08785006 A EP 08785006A EP 2181268 B1 EP2181268 B1 EP 2181268B1
Authority
EP
European Patent Office
Prior art keywords
diffuser
region
compressor
radial compressor
tongue
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Not-in-force
Application number
EP08785006.1A
Other languages
German (de)
French (fr)
Other versions
EP2181268A1 (en
Inventor
Tobias Dettmann
Andre Kaufmann
Stefan Krauss
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Continental Automotive GmbH
Original Assignee
Continental Automotive GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Continental Automotive GmbH filed Critical Continental Automotive GmbH
Publication of EP2181268A1 publication Critical patent/EP2181268A1/en
Application granted granted Critical
Publication of EP2181268B1 publication Critical patent/EP2181268B1/en
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/40Casings; Connections of working fluid
    • F04D29/42Casings; Connections of working fluid for radial or helico-centrifugal pumps
    • F04D29/44Fluid-guiding means, e.g. diffusers
    • F04D29/441Fluid-guiding means, e.g. diffusers especially adapted for elastic fluid pumps
    • F04D29/444Bladed diffusers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/40Casings; Connections of working fluid
    • F04D29/42Casings; Connections of working fluid for radial or helico-centrifugal pumps
    • F04D29/44Fluid-guiding means, e.g. diffusers
    • F04D29/441Fluid-guiding means, e.g. diffusers especially adapted for elastic fluid pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/40Casings; Connections of working fluid
    • F04D29/42Casings; Connections of working fluid for radial or helico-centrifugal pumps
    • F04D29/4206Casings; Connections of working fluid for radial or helico-centrifugal pumps especially adapted for elastic fluid pumps
    • F04D29/422Discharge tongues
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05DINDEXING SCHEME FOR ASPECTS RELATING TO NON-POSITIVE-DISPLACEMENT MACHINES OR ENGINES, GAS-TURBINES OR JET-PROPULSION PLANTS
    • F05D2250/00Geometry
    • F05D2250/50Inlet or outlet
    • F05D2250/52Outlet

Definitions

  • the invention relates to a centrifugal compressor with a diffuser which is used for example in an exhaust gas turbocharger for a motor vehicle.
  • Turbochargers generally consist of an exhaust gas turbine in an exhaust gas flow, which is connected via a turbo shaft with a compressor in the intake tract.
  • a turbine wheel and a compressor wheel are rotatably mounted on the turbo shaft, wherein the turbine wheel is arranged in a turbine housing and the compressor wheel in a compressor housing with a diffuser.
  • the exhaust gas flow passing through the turbine housing drives the turbine wheel.
  • the turbine wheel in turn drives the compressor wheel, causing the compressor to increase the pressure in the intake tract of the engine, so that a larger amount of air enters the cylinder during the intake stroke. This means that more oxygen is available and a correspondingly larger amount of fuel can be burned. As a result, the power output of the engine can be increased.
  • the compressor Decisive for the noise emission of the turbocharger here is the compressor.
  • the compressor discharge radiates a lot of noise to the outside.
  • Radial compressors for exhaust gas turbochargers are known from the prior art, which have a diffuser, which converts the built-up speed in pressure.
  • a diffuser ends in a so-called spiral which discharges the compressed air to the consumer.
  • the geometry of the transition of the spiral, ie the so-called tongue, is in this case a critical embodiment element, since pressure pulsations often arise at this point.
  • the problem of the formation of such pressure pulsations has hitherto been fluidic favorable shape of the tongue with a constant diffuser diameter or radius solved.
  • Such a radial compressor is for example off US 2005/232762 A1 known.
  • a compressor housing that achieves a reduced weight and reduced number of parts with the task of maximizing performance while still withstanding the high operating stresses imposed by the pressure and external structural loadings.
  • an arrangement of guide vanes, which are formed integrated on the screw housing wall are proposed, on the one hand direct the flow of fluid and on the other hand support the housing stabilizing.
  • silencers are frequently used. These silencers may have channel-like or backdrop-like elements, which in turn are lined, for example, with sound-absorbing material.
  • absorption mufflers it is also possible to use acoustic resonators and acoustic filters for soundproofing.
  • centrifugal compressor with a diffuser and a turbocharger with a centrifugal compressor designed in such a way are that the occurrence of pressure pulsations can at least be reduced or substantially prevented.
  • the diffuser in the region of the transition of the spiral housing ie in the region of the tongue has a larger or larger width and such an increased radius that it has a bulge in the manner of an oval, the formation of a negative pressure area is prevented or at least reduced , so that disturbing pulsations can be contained and thus the occurrence of corresponding noise.
  • the radial compressor has the advantage that disturbing pressure pulsations can be prevented by reducing or suppressing a negative pressure area, which arises above all in the region of the transition of the spiral housing in the diffuser.
  • the use of additional silencers at least partially or completely be waived. This results in a significant saving in terms of manufacturing and assembly costs.
  • a more compact design can be achieved, for example, when used in a turbocharger.
  • This has the further advantage that the cross-section of a diffuser can be relatively easily adapted or changed and is therefore less expensive and requires no additional space compared to the use of mufflers in the prior art.
  • the cross section of the diffuser is varied by increasing the width and the radius or the diameter of the diffuser in the region of the transition of the spiral housing, ie in the region of the tongue.
  • At least one wall or both opposing walls of the diffuser are outwardly inclined and / or arched.
  • the respective wall can form a wedge shape, whereby the wedge shape increases towards the outside.
  • the walls can be identical or different in shape, inclination and / or curvature. This has the advantage that, depending on the function and intended use, the width of the diffuser can be easily achieved in at least one area by adapting both walls or even just one wall.
  • a radial compressor 10 is shown with a diffuser 12 according to the prior art, which is part of a turbocharger (not shown).
  • the radial compressor 10 is shown simplified from the front in a sectional view.
  • the radial compressor 10 in this case has a volute casing 14 and the diffuser 12.
  • the radius r1 or the diameter of the diffuser 12 is constant.
  • the width b1 of the diffuser 12 is constant as in the following Fig. 2 is shown.
  • the diffuser 12 therefore has a substantially constant cross section.
  • a turbo shaft 16 is arranged, on which a compressor wheel 18 is provided.
  • the compressor wheel 18 is driven via a corresponding turbine wheel (not shown) on the turbo shaft 16.
  • 18 air is sucked axially by the speed of the compressor wheel and accelerated in the compressor 18 to high speeds. The air leaves the compressor wheel 18 while in the radial direction.
  • the diffuser 12 In the diffuser 12, the velocity of the air is reduced. The consequence of this is that pressure and temperature increase.
  • the diffuser 12 is formed, for example, from a compressor rear wall and a part of the spiral housing 14. In the volute 14, the air is collected and the speed up to the compressor outlet further reduced. In this case, the geometry of the transition of the spiral 13 of the volute 14, ie the so-called. Tongue 20, forms a critical execution element, since at this point often pressure pulsations arise because here can form a negative pressure area.
  • mufflers (not shown) are provided to prevent or at least reduce disturbing noises as a result of such pressure pulsations.
  • Fig. 2 is a sectional view through the diffuser 12 and the compressor 18 according to Fig. 1 shown.
  • the width b1 of the diffuser 12 is kept substantially constant.
  • a radial compressor 10 is shown, which is part of a turbocharger (not shown).
  • the radial compressor 10 also has a volute casing 14 and a diffuser 12.
  • On a turbo shaft 16 is, as previously with reference to Fig. 1 a compressor wheel 18 and, for example, a turbine wheel (not shown).
  • the diffuser 12 converts the built-up speed of the air sucked in via the compressor wheel 18 into pressure.
  • the diffuser 12 terminates in the spiral 13 of the spiral housing 14, which discharges the compressed air to the consumer.
  • the cross section of the diffuser 12 is changed here.
  • the cross section of the diffuser 12 is varied and is therefore not constant, in contrast to the previously indicated prior art.
  • the radius r or the diameter of the diffuser 12 is designed or changed as follows.
  • the radius r or the diameter of the diffuser 12 is designed such that the formation of a negative pressure area is reduced or substantially no negative pressure area in the region of the tongue 20, ie in the region of the Transition of the spiral, arises. This is achieved, for example, by increasing the radius r or the diameter of the diffuser 12 in at least one predetermined area, in order to reduce or substantially prevent the formation of a negative pressure area.
  • a radius r2 of the diffuser is therefore chosen to be larger in the region of the tongue 20 than a radius r1 of the diffuser 12 outside this range.
  • the diffuser 12 as in Fig. 3 is shown, for example, in the region of the tongue 20 and the transition of the spiral 13 are carried out with a larger radius r2 or larger diameter.
  • the diffuser 12 is formed, for example, in the region of the tongue 20 with a curvature 30 to the outside or forms an oval in this area.
  • the representation in Fig. 3 is greatly simplified.
  • Fig. 4 is further a sectional view through the compressor wheel 18 and the diffuser 12 according to Fig. 3 shown.
  • the diffuser 12 has a substantially constant width b1.
  • FIG. 5 Now another embodiment of the radial compressor 10 is shown.
  • the radial compressor 10 has a constant diameter or radius r1.
  • the width b of the diffuser 12 is changed here.
  • the width b of the diffuser 12 is varied in at least one range in order to counteract the previously described pressure pulsations which occur, for example, in the region of the transition of the spiral 13.
  • the width b of the diffuser 12 is here, for example, increased, as in Fig. 6 is shown.
  • the width b1 is increased in the illustrated area to a width b2.
  • a first wall 22 of the diffuser 12 is formed in this area, for example, slightly inclined by an angle ⁇ outwards.
  • the first wall 22 can also be curved, for example.
  • an opposite second wall 24 of the diffuser 12 can be adjusted accordingly.
  • a diffuser 12 according to the invention additionally has a varied diameter or radius r in each of the at least one region, as described with reference to FIGS 3 and 4 previously described in detail.
  • the cross section of the diffuser 12 is varied over the width b and the diameter or radius r.
  • first and / or second wall 22, 24 of the diffuser 12 can be outwardly inclined and / or arched in order to increase the width b of the diffuser 12.
  • the two walls 22, 24 may be identical or differently shaped, i. for example, with different inclinations or vaults.
  • the walls 22, 24 may also have different shapes in this area.
  • one wall 22, 24 inclined and the other wall 22, 24 may be curved, depending on the function and purpose.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)

Description

Die Erfindung betrifft einen Radialverdichter mit einem Diffusor der beispielsweise bei einem Abgasturbolader für ein Kraftfahrzeug eingesetzt wird.The invention relates to a centrifugal compressor with a diffuser which is used for example in an exhaust gas turbocharger for a motor vehicle.

Turbolader bestehen allgemein aus einer Abgasturbine in einem Abgasstrom, die über eine Turbowelle mit einem Verdichter im Ansaugtrakt verbunden ist. Auf der Turbowelle sind hierzu beispielsweise ein Turbinenrad und ein Verdichterrad drehbar gelagert, wobei das Turbinenrad in einem Turbinengehäuse angeordnet ist und das Verdichterrad in einem Verdichtergehäuse mit einem Diffusor. Im Betrieb treibt der Abgasstrom, der durch das Turbinengehäuse geleitet wird, das Turbinenrad an. Das Turbinenrad treibt wiederum das Verdichterrad an, wodurch der Verdichter den Druck im Ansaugtrakt des Motors erhöht, so dass während des Ansaugtaktes eine größere Menge Luft in den Zylinder gelangt. Dies bewirkt, dass mehr Sauerstoff zur Verfügung steht und eine entsprechend größere Kraftstoffmenge verbrannt werden kann. Dadurch kann die Leistungsabgabe des Motors erhöht werden.Turbochargers generally consist of an exhaust gas turbine in an exhaust gas flow, which is connected via a turbo shaft with a compressor in the intake tract. For this purpose, for example, a turbine wheel and a compressor wheel are rotatably mounted on the turbo shaft, wherein the turbine wheel is arranged in a turbine housing and the compressor wheel in a compressor housing with a diffuser. In operation, the exhaust gas flow passing through the turbine housing drives the turbine wheel. The turbine wheel in turn drives the compressor wheel, causing the compressor to increase the pressure in the intake tract of the engine, so that a larger amount of air enters the cylinder during the intake stroke. This means that more oxygen is available and a correspondingly larger amount of fuel can be burned. As a result, the power output of the engine can be increased.

Maßgeblich für die Lärmemission des Turboladers ist hierbei der Verdichter. Insbesondere strahlt der Verdichtereintritt sehr viel Lärm nach außen ab.Decisive for the noise emission of the turbocharger here is the compressor. In particular, the compressor discharge radiates a lot of noise to the outside.

Aus dem Stand der Technik sind Radialverdichter für Abgasturbolader bekannt, die über einen Diffusor verfügen, welcher die aufgebaute Geschwindigkeit in Druck umsetzt. Ein solcher Diffusor endet in einer sog. Spirale welche die verdichtete Luft zum Verbraucher abführt. Die Geometrie des Übergangs der Spirale, d.h. die sog. Zunge, ist hierbei ein kritisches Ausführungselement, da an dieser Stelle oft Druckpulsationen entstehen. Gemäß dem Stand der Technik wurde bisher das Problem der Entstehung solcher Druckpulsationen durch eine strömungstechnisch günstige Ausformung der Zunge mit einem konstanten Diffusordurchmesser bzw. Radius gelöst.Radial compressors for exhaust gas turbochargers are known from the prior art, which have a diffuser, which converts the built-up speed in pressure. Such a diffuser ends in a so-called spiral which discharges the compressed air to the consumer. The geometry of the transition of the spiral, ie the so-called tongue, is in this case a critical embodiment element, since pressure pulsations often arise at this point. According to the prior art, the problem of the formation of such pressure pulsations has hitherto been fluidic favorable shape of the tongue with a constant diffuser diameter or radius solved.

Ein solcher Radialverdichter ist zum Beispiel aus US 2005/232762 A1 bekannt. Offenbart wird ein Verdichtergehäuse, das mit der Aufgabenstellung bei maximierter Leistung ein reduziertes Gewicht und verringerte Teilezahl zu erzielen und gleichwohl den hohen Betriebsbeanspruchungen durch den erzeugten Druck und äußere Strukturbelastungen Stand zu halten. Dazu wird eine Anordnung von Leitschaufeln, die an der Schneckengehäusewand integriert ausgebildet sind vorgeschlagen, die einerseits den Fluidstrom lenken und andererseits das Gehäuse stabilisierend unterstützen.Such a radial compressor is for example off US 2005/232762 A1 known. Disclosed is a compressor housing that achieves a reduced weight and reduced number of parts with the task of maximizing performance while still withstanding the high operating stresses imposed by the pressure and external structural loadings. For this purpose, an arrangement of guide vanes, which are formed integrated on the screw housing wall are proposed, on the one hand direct the flow of fluid and on the other hand support the housing stabilizing.

Weiterhin ist aus dem Dokument DE 318 837 C ein zweigeteilter Diffusor für ein Kreiselgebläse mit in der Drehrichtung zunehmender radialer Höhe bekannt, bei dem die geraden Wände des inneren Diffusors nach außen divergieren. Dadurch wird eine über den Querschnitt der Ausblasöffnung gleichmäßige Ausströmgeschwindigkeit des Luftstroms erreicht.Furthermore, from the document DE 318 837 C a two-part diffuser for a centrifugal fan with increasing in the direction of rotation radial height is known in which the straight walls of the inner diffuser diverge outwards. As a result, a uniform over the cross section of the exhaust opening outflow velocity of the air flow is achieved.

Zur Reduktion des Ansauglärms bzw. bei großer Schallbelastung werden häufig vorgeschaltete Schalldämpfer eingesetzt. Diese Schalldämpfer können kanalartige oder kulissenartige Elemente aufweisen, welche ihrerseits beispielsweise mit schallabsorbierendem Material ausgekleidet sind. Neben solchen Absorptionsschalldämpfern können auch akustische Resonatoren und akustische Filter zur Schalldämpfung eingesetzt werden.In order to reduce the intake noise or in the case of large noise pollution, upstream silencers are frequently used. These silencers may have channel-like or backdrop-like elements, which in turn are lined, for example, with sound-absorbing material. In addition to such absorption mufflers, it is also possible to use acoustic resonators and acoustic filters for soundproofing.

Solche Schalldämpfer haben jedoch den Nachteil, dass sie zusätzlichen Bauraum benötigen. Des Weiteren sind die Fertigung und die Montage der Schalldämpfer kostspielig und mit einem erheblichen Aufwand verbunden.However, such mufflers have the disadvantage that they require additional space. Furthermore, the production and installation of the muffler are costly and associated with considerable effort.

Demnach ist es die Aufgabe der vorliegenden Erfindung, einen Radialverdichter mit einem Diffusor und einen Turbolader mit einem Radialverdichter bereitzustellen, die derart gestaltet sind, dass das Auftreten von Druckpulsationen zumindest reduziert oder im Wesentlichen ganz verhindert werden kann.Accordingly, it is the object of the present invention to provide a centrifugal compressor with a diffuser and a turbocharger with a centrifugal compressor, designed in such a way are that the occurrence of pressure pulsations can at least be reduced or substantially prevented.

Diese Aufgabe wird durch einen Radialverdichter und einen Turbolader mit den Merkmalen des jeweiligen unabhängigen Patentanspruchs gelöst.This object is achieved by a centrifugal compressor and a turbocharger with the features of the respective independent claim.

Demgemäß wird erfindungsgemäß ein Radialverdichter, insbesondere für einen Turbolader und ein Turbolader mit einem solchen Radialverdichter, bereitgestellt, wobei der Radialverdichter gestaltet ist mit:

  • einem Spiralgehäuse und
  • einem Diffusor,
wobei der Diffusor derart ausgebildet ist, dass ein Unterdruckgebiet im Bereich des Übergangs des Spiralgehäuses, also im Bereich der Zunge zumindest reduziert ist. Dazu ist der Querschnitt des Diffusors (12) im Bereich der Zunge (20), derart variiert, dass die Bildung eines Unterdruckgebiets in diesem Bereich zumindest reduziert ist. Dazu weist der Diffusor im Bereich der Zunge eine größere Breite auf und der Radius des Diffusors ist im Bereich der Zunge derart vergrößert, dass er eine Auswölbung nach Art eines Ovals aufweist.Accordingly, according to the invention a radial compressor, in particular for a turbocharger and a turbocharger with such a radial compressor, provided, wherein the radial compressor is designed with:
  • a spiral housing and
  • a diffuser,
wherein the diffuser is designed such that a negative pressure area in the region of the transition of the spiral housing, ie in the region of the tongue is at least reduced. For this purpose, the cross section of the diffuser (12) in the region of the tongue (20) is varied in such a way that the formation of a negative pressure region in this region is at least reduced. For this purpose, the diffuser in the region of the tongue has a greater width and the radius of the diffuser is increased in the region of the tongue such that it has a bulge in the manner of an oval.

Dadurch dass der Diffusor im Bereich des Übergangs des Spiralgehäuses, also im Bereich der Zunge eine größere bzw. größer werdende Breite und einen derart vergrößerten Radius, dass er eine Auswölbung nach Art eines Ovals aufweist, aufweist, wird die Bildung eines Unterdruckgebiets verhindert oder zumindest reduziert, so dass störende Pulsationen eingedämmt werden können und damit das Auftreten entsprechender Störgeräusche.Characterized that the diffuser in the region of the transition of the spiral housing, ie in the region of the tongue has a larger or larger width and such an increased radius that it has a bulge in the manner of an oval, the formation of a negative pressure area is prevented or at least reduced , so that disturbing pulsations can be contained and thus the occurrence of corresponding noise.

Der Radialverdichter hat dabei den Vorteil, dass durch eine Reduzierung oder eine Unterdrückung eines Unterdruckgebiets, das vor allem im Bereich des Übergangs des Spiralgehäuses bei dem Diffusor entsteht, störende Druckpulsationen verhindert werden können. Dadurch kann beispielsweise auf den Einsatz von zusätzlichen Schalldämpfern zumindest teilweise oder ganz verzichtet werden. Dies resultiert in einer erheblichen Ersparnis in Bezug auf Herstellungs- und Montagekosten. Des Weiteren kann eine kompaktere Bauweise beispielsweise beim Einsatz in einem Turbolader erzielt werden. Dies hat weiterhin den Vorteil, dass der Querschnitt eines Diffusors verhältnismäßig einfach angepasst bzw. verändert werden kann und daher kostengünstiger ist und keinen zusätzlichen Bauraum benötigt, im Vergleich zu der Verwendung von Schalldämpfern im Stand der Technik.The radial compressor has the advantage that disturbing pressure pulsations can be prevented by reducing or suppressing a negative pressure area, which arises above all in the region of the transition of the spiral housing in the diffuser. As a result, for example, the use of additional silencers at least partially or completely be waived. This results in a significant saving in terms of manufacturing and assembly costs. Furthermore, a more compact design can be achieved, for example, when used in a turbocharger. This has the further advantage that the cross-section of a diffuser can be relatively easily adapted or changed and is therefore less expensive and requires no additional space compared to the use of mufflers in the prior art.

Vorteilhafte Ausgestaltungen und Weiterbildungen der Erfindung ergeben sich aus den Unteransprüchen sowie der Beschreibung unter Bezugnahme auf die Zeichnungen.Advantageous embodiments and modifications of the invention will become apparent from the dependent claims and the description with reference to the drawings.

In der erfindungsgemäßen Ausführungsform wird der Querschnitt des Diffusors variiert, indem die Breite und der Radius bzw. der Durchmesser des Diffusors im Bereich des Übergangs des Spiralgehäuses, also im Bereich der Zunge vergrößert werden. Dies hat den Vorteil, dass der Diffusor hierdurch eine weitere Verzögerung der Gasgeschwindigkeit erzeugen kann und damit einen größeren Druckaufbau. Der größere Druckaufbau ermöglicht eine Abströmung im Wesentlichen ohne oder zumindest mit einer reduzierten Pulsation. Der Bereich des Diffusors mit dem vergrößerten Durchmesser bzw. Radius kann dabei in Form einer Auswölbung nach außen oder in Form eines Ovals ausgebildet sein.In the embodiment according to the invention, the cross section of the diffuser is varied by increasing the width and the radius or the diameter of the diffuser in the region of the transition of the spiral housing, ie in the region of the tongue. This has the advantage that the diffuser can thereby produce a further delay of the gas velocity and thus a larger pressure build-up. The larger pressure build-up allows a discharge substantially without or at least with a reduced pulsation. The region of the diffuser with the enlarged diameter or radius can be designed in the form of a bulge outwards or in the form of an oval.

In einer weiteren erfindungsgemäßen Ausführungsform sind zur Vergrößerung der Breite des Diffusors wenigstens eine Wand oder beide gegenüberliegenden Wände des Diffusors nach außen geneigt und/oder gewölbt ausgebildet. Die jeweilige Wand kann dabei eine Keilform bilden, wobei sich die Keilform nach außen hin vergrößert. Die Wände können dabei hinsichtlich ihrer Form, Neigung und/oder Wölbung identisch oder unterschiedlich ausgebildet werden. Dies hat den Vorteil, dass je nach Funktion und Einsatzzweck die Breite des Diffusors in wenigstens einem Bereich durch Anpassen beider Wände oder auch nur einer Wand leicht erreicht werden kann.In a further embodiment according to the invention, to increase the width of the diffuser, at least one wall or both opposing walls of the diffuser are outwardly inclined and / or arched. The respective wall can form a wedge shape, whereby the wedge shape increases towards the outside. The walls can be identical or different in shape, inclination and / or curvature. This has the advantage that, depending on the function and intended use, the width of the diffuser can be easily achieved in at least one area by adapting both walls or even just one wall.

Die Erfindung wird nachfolgend anhand der in den schematischen Figuren der Zeichnungen angegebenen Ausführungsbeispiele näher erläutert. Es zeigen:

Fig. 1
eine stark vereinfachte, schematische Schnittansicht eines Radialverdichters und seines Diffusors gemäß dem Stand der Technik;
Fig. 2
eine stark vereinfachte Schnittansicht durch das Verdichterrad und einen Diffusor gemäß Fig. 1;
Fig. 3
eine stark vereinfachte, schematische Schnittansicht eines Radialverdichters und seines Diffusors bei dem der Radius bzw. der Durchmesser des Diffusors im Bereich der Zunge vergrößert ist;
Fig. 4
eine stark vereinfachte Schnittansicht durch das Verdichterrad und einen Diffusor gemäß Fig. 3;
Fig. 5
eine stark vereinfachte, schematische Schnittansicht eines Radialverdichters und seines Diffusors, zur Erläuterung eines Teilaspekts der Erfindung; und
Fig. 6
eine stark vereinfachte Schnittansicht durch das Verdichterrad und einen Diffusor gemäß Fig. 5.
The invention will be explained in more detail with reference to the exemplary embodiments indicated in the schematic figures of the drawings. Show it:
Fig. 1
a highly simplified, schematic sectional view of a radial compressor and its diffuser according to the prior art;
Fig. 2
a greatly simplified sectional view through the compressor wheel and a diffuser according to Fig. 1 ;
Fig. 3
a greatly simplified, schematic sectional view of a radial compressor and its diffuser in which the radius and the diameter of the diffuser in the region of the tongue is increased;
Fig. 4
a greatly simplified sectional view through the compressor wheel and a diffuser according to Fig. 3 ;
Fig. 5
a highly simplified, schematic sectional view of a centrifugal compressor and its diffuser, for explaining a partial aspect of the invention; and
Fig. 6
a greatly simplified sectional view through the compressor wheel and a diffuser according to Fig. 5 ,

In allen Figuren sind gleiche bzw. funktionsgleiche Elemente und Vorrichtungen - sofern nichts anderes angegeben ist - mit denselben Bezugszeichen gekennzeichnet.In all figures, identical or functionally identical elements and devices are - unless otherwise indicated - marked with the same reference numerals.

In Fig. 1 ist ein Radialverdichter 10 mit einem Diffusor 12 gemäß dem Stand der Technik gezeigt, der Bestandteil eines Turboladers ist (nicht dargestellt). Der Radialverdichter 10 ist dabei von vorn in einer Schnittansicht vereinfacht dargestellt.In Fig. 1 a radial compressor 10 is shown with a diffuser 12 according to the prior art, which is part of a turbocharger (not shown). The radial compressor 10 is shown simplified from the front in a sectional view.

Der Radialverdichter 10 weist hierbei ein Spiralgehäuse 14 und den Diffusor 12 auf. Der Radius r1 bzw. der Durchmesser des Diffusors 12 ist dabei konstant. Des Weiteren ist die Breite b1 des Diffusors 12 konstant, wie in nachfolgender Fig. 2 gezeigt ist. Der Diffusor 12 verfügt daher über einen im Wesentlichen konstanten Querschnitt.The radial compressor 10 in this case has a volute casing 14 and the diffuser 12. The radius r1 or the diameter of the diffuser 12 is constant. Furthermore, the width b1 of the diffuser 12 is constant as in the following Fig. 2 is shown. The diffuser 12 therefore has a substantially constant cross section.

In dem Gehäuse des Radialverdichters 10 ist eine Turbowelle 16 angeordnet, auf der ein Verdichterrad 18 vorgesehen ist. Das Verdichterrad 18 wird dabei über ein entsprechendes Turbinenrad (nicht dargestellt) auf der Turbowelle 16 angetrieben. Im Betrieb wird durch die Drehzahl des Verdichterrads 18 Luft axial angesaugt und im Verdichterrad 18 auf hohe Geschwindigkeiten beschleunigt. Die Luft verlässt das Verdichterrad 18 dabei in radialer Richtung.In the housing of the radial compressor 10, a turbo shaft 16 is arranged, on which a compressor wheel 18 is provided. The compressor wheel 18 is driven via a corresponding turbine wheel (not shown) on the turbo shaft 16. In operation, 18 air is sucked axially by the speed of the compressor wheel and accelerated in the compressor 18 to high speeds. The air leaves the compressor wheel 18 while in the radial direction.

Im Diffusor 12 wird die Geschwindigkeit der Luft verringert. Die Folge davon ist, dass Druck und Temperatur ansteigen. Der Diffusor 12 wird beispielsweise aus einer Verdichterrückwand und einem Teil des Spiralgehäuses 14 gebildet. Im Spiralgehäuse 14 wird die Luft gesammelt und die Geschwindigkeit bis zum Verdichteraustritt weiterhin reduziert. Dabei bildet die Geometrie des Übergangs der Spirale 13 des Spiralgehäuses 14, d.h. die sog. Zunge 20, ein kritisches Ausführungselement, da an dieser Stelle oft Druckpulsationen entstehen, da sich hier ein Unterdruckgebiet bilden kann. Wie zuvor bereits ausgeführt, sind daher bei den Radialverdichtern 10 gemäß dem Stand der Technik unter anderem Schalldämpfer (nicht dargestellt) vorgesehen, um störende Geräusche in Folge solcher Druckpulsationen zu verhindern oder zumindest zu reduzieren.In the diffuser 12, the velocity of the air is reduced. The consequence of this is that pressure and temperature increase. The diffuser 12 is formed, for example, from a compressor rear wall and a part of the spiral housing 14. In the volute 14, the air is collected and the speed up to the compressor outlet further reduced. In this case, the geometry of the transition of the spiral 13 of the volute 14, ie the so-called. Tongue 20, forms a critical execution element, since at this point often pressure pulsations arise because here can form a negative pressure area. As previously stated, therefore, among the radial compressors 10 according to the prior art, inter alia, mufflers (not shown) are provided to prevent or at least reduce disturbing noises as a result of such pressure pulsations.

In Fig. 2 ist eine Schnittansicht durch den Diffusor 12 und durch das Verdichterrad 18 gemäß Fig. 1 gezeigt. Die Breite b1 des Diffusors 12 ist hierbei im Wesentlichen konstant gehalten.In Fig. 2 is a sectional view through the diffuser 12 and the compressor 18 according to Fig. 1 shown. The width b1 of the diffuser 12 is kept substantially constant.

Des Weiteren ist in Fig. 3 nun ein Radialverdichter 10 dargestellt, der Teil eines Turboladers (nicht dargestellt) ist. Der Radialverdichter 10 weist dabei ebenfalls ein Spiralgehäuse 14 und einen Diffusor 12 auf. Auf einer Turbowelle 16 ist, wie zuvor mit Bezug auf Fig. 1 beschrieben wurde, ein Verdichterrad 18 und beispielsweise ein Turbinenrad (nicht dargestellt) angeordnet. Der Diffusor 12 setzt hierbei die aufgebaute Geschwindigkeit der über das Verdichterrad 18 angesaugten Luft in Druck um. Der Diffusor 12 endet dabei in der Spirale 13 des Spiralgehäuses 14, welche die verdichtete Luft zum Verbraucher abführt.Furthermore, in Fig. 3 now a radial compressor 10 is shown, which is part of a turbocharger (not shown). The radial compressor 10 also has a volute casing 14 and a diffuser 12. On a turbo shaft 16 is, as previously with reference to Fig. 1 a compressor wheel 18 and, for example, a turbine wheel (not shown). In this case, the diffuser 12 converts the built-up speed of the air sucked in via the compressor wheel 18 into pressure. The diffuser 12 terminates in the spiral 13 of the spiral housing 14, which discharges the compressed air to the consumer.

Um Druckpulsationen entgegenzuwirken, die im Bereich des Übergangs der Spirale 13, der sogenannten Zunge 20, entstehen, wird hier der Querschnitt des Diffusors 12 verändert. Mit anderen Worten, der Querschnitt des Diffusors 12 wird variiert und ist daher im Gegensatz zum zuvor aufgezeigten Stand der Technik nicht konstant. Hierzu ist der Radius r bzw. der Durchmesser des Diffusors 12 wie folgt gestaltet bzw. verändert. Der Radius r bzw. der Durchmesser des Diffusors 12 wird derart ausgeführt, dass die Ausbildung eines Unterdruckgebiets reduziert wird oder im Wesentlichen kein Unterdruckgebiet im Bereich der Zunge 20, d.h. im Bereich des Übergangs der Spirale, entsteht. Dies wird beispielsweise dadurch erreicht, dass der Radius r bzw. der Durchmesser des Diffusors 12 in wenigstens einem vorbestimmten Bereich vergrößert wird, um die Ausbildung eines Unterdruckgebiets zu reduzieren oder im Wesentlichen ganz zu verhindern. Ein Radius r2 des Diffusors ist daher in dem Bereich der Zunge 20 größer gewählt als ein Radius r1 des Diffusors 12 außerhalb dieses Bereichs.To counteract pressure pulsations that arise in the region of the transition of the spiral 13, the so-called tongue 20, the cross section of the diffuser 12 is changed here. In other words, the cross section of the diffuser 12 is varied and is therefore not constant, in contrast to the previously indicated prior art. For this purpose, the radius r or the diameter of the diffuser 12 is designed or changed as follows. The radius r or the diameter of the diffuser 12 is designed such that the formation of a negative pressure area is reduced or substantially no negative pressure area in the region of the tongue 20, ie in the region of the Transition of the spiral, arises. This is achieved, for example, by increasing the radius r or the diameter of the diffuser 12 in at least one predetermined area, in order to reduce or substantially prevent the formation of a negative pressure area. A radius r2 of the diffuser is therefore chosen to be larger in the region of the tongue 20 than a radius r1 of the diffuser 12 outside this range.

Es hat sich gezeigt, dass es beispielsweise auch vorteilhaft sein kann bei einem Diffusor 12 mit einer konstanten Breite keinen konstanten Radius r bzw. Durchmesser zu verwenden, wie dies in dem vorausgehend gezeigten Beispiel der Fall ist. Stattdessen erweist es sich als vorteilhaft, wenn der Diffusor 12 in seinem Durchmesser bzw. Radius r variiert wird. Das bedeutet, dass der Diffusor 12 in wenigstens einem Bereich einen leicht größeren Durchmesser bzw. Radius r2 aufweist, beispielsweise in einem Bereich des Übergangs der Spiral 13.It has been found that, for example, it is also advantageous to use a constant width r and / or diameter in a diffuser 12 having a constant width, as is the case in the previously shown example. Instead, it proves to be advantageous if the diffuser 12 is varied in its diameter or radius r. This means that the diffuser 12 has a slightly larger diameter or radius r 2 in at least one region, for example in a region of the transition of the spiral 13.

Dieser vergrößerte Durchmesser bzw. Radius r2 des Diffusors 12 erzeugt eine weitere Verzögerung der Gasgeschwindigkeit und einen größeren Druckaufbau, welcher eine Abströmung im Wesentlichen ohne oder zumindest mit einer reduzierten Pulsation ermöglicht. Dies hat zur Folge, dass einer unerwünschten Geräuschbildung entgegengewirkt werden kann, so dass keine zusätzlichen schalldämpfenden Elemente installiert werden müssen, die zu zusätzlichen Kosten und Montageaufwand führen.This increased diameter or radius r2 of the diffuser 12 produces a further delay of the gas velocity and a larger pressure build-up, which allows a discharge substantially without or at least with a reduced pulsation. This has the consequence that an undesirable noise can be counteracted, so that no additional sound-absorbing elements must be installed, which lead to additional costs and installation costs.

Hierzu kann, wie zuvor bereits genannt, der Diffusor 12, wie in Fig. 3 gezeigt ist, beispielsweise im Bereich der Zunge 20 bzw. des Übergangs der Spirale 13 mit einem größeren Radius r2 bzw. größeren Durchmesser ausgeführt werden. Dabei wird der Diffusor 12 beispielsweise im Bereich der Zunge 20 mit einer Wölbung 30 nach außen ausgeformt bzw. bildet in diesem Bereich ein Oval. Die Darstellung in Fig. 3 ist dabei stark vereinfacht.For this purpose, as already mentioned above, the diffuser 12, as in Fig. 3 is shown, for example, in the region of the tongue 20 and the transition of the spiral 13 are carried out with a larger radius r2 or larger diameter. In this case, the diffuser 12 is formed, for example, in the region of the tongue 20 with a curvature 30 to the outside or forms an oval in this area. The representation in Fig. 3 is greatly simplified.

In Fig. 4 ist des Weiteren eine Schnittansicht durch das Verdichterrad 18 und den Diffusor 12 gemäß Fig. 3 gezeigt. Der Diffusor 12 weist dabei eine im Wesentlichen konstante Breite b1 auf.In Fig. 4 is further a sectional view through the compressor wheel 18 and the diffuser 12 according to Fig. 3 shown. The diffuser 12 has a substantially constant width b1.

In Fig. 5 ist nun eine andere Ausführungsform des Radialverdichters 10 gezeigt. Der Radialverdichter 10 weist dabei einen konstanten Durchmesser bzw. Radius r1 auf. Um den Querschnitt des Diffusors 12 entsprechend zu variieren wird hier die Breite b des Diffusors 12 verändert.In Fig. 5 Now another embodiment of the radial compressor 10 is shown. The radial compressor 10 has a constant diameter or radius r1. In order to vary the cross section of the diffuser 12 accordingly, the width b of the diffuser 12 is changed here.

Gemäß der Erfindung wird zusätzlich zu dem vergrößerten Radius r2 die Breite b des Diffusors 12 in wenigstens einem Bereich variiert, um den zuvor beschriebenen Druckpulsationen entgegenzuwirken, die beispielsweise im Bereich des Übergangs der Spirale 13 entstehen. Die Breite b des Diffusors 12 wird hierbei beispielsweise vergrößert, wie in Fig. 6 gezeigt ist. Die Breite b1 wird in dem dargestellten Bereich dabei auf eine Breite b2 vergrößert. Hierzu wird eine erste Wand 22 des Diffusors 12 in diesem Bereich beispielsweise leicht um einen Winkel γ nach außen geneigt ausgebildet. Alternativ kann die erste Wand 22 aber auch beispielsweise gewölbt ausgebildet werden. Grundsätzlich kann aber auch eine gegenüberliegende zweite Wand 24 des Diffusors 12 entsprechend angepasst werden.According to the invention, in addition to the increased radius r2, the width b of the diffuser 12 is varied in at least one range in order to counteract the previously described pressure pulsations which occur, for example, in the region of the transition of the spiral 13. The width b of the diffuser 12 is here, for example, increased, as in Fig. 6 is shown. The width b1 is increased in the illustrated area to a width b2. For this purpose, a first wall 22 of the diffuser 12 is formed in this area, for example, slightly inclined by an angle γ outwards. Alternatively, however, the first wall 22 can also be curved, for example. In principle, however, an opposite second wall 24 of the diffuser 12 can be adjusted accordingly.

Hierbei wird die Breite b des Diffusors 12 in dem Bereich des Übergangs der Spirale 13 bzw. im Bereich der Zunge 20 variiert bzw. auf eine Breite b2 vergrößert, um der Ausbildung eines Unterdruckgebiets in diesem Bereich entgegen zu wirken. Der Diffusor 12 kann hierbei eine Art Vertiefung 26 in Form eines Keils 28 aufweisen, wie in Fig. 5 in einer Vorderschnittansicht gezeigt ist und in Fig. 6 in einer Seitenschnittansicht. Der Keil 28 weitet sich dabei beispielsweise nach außen auf in Richtung der Zunge 20.In this case, the width b of the diffuser 12 in the region of the transition of the spiral 13 or in the region of the tongue 20 is varied or increased to a width b 2 in order to counteract the formation of a negative pressure region in this region. The diffuser 12 may in this case have a type of depression 26 in the form of a wedge 28, as in FIG Fig. 5 is shown in a front sectional view and in Fig. 6 in a side sectional view. The wedge 28 expands outward, for example, in the direction of the tongue 20.

Obwohl die vorliegende Erfindung vorstehend anhand des bevorzugten Ausführungsbeispiels beschrieben wurde, ist sie darauf nicht beschränkt, sondern auf vielfältige Art und Weise modifizierbar. Die zuvor beschriebenen Ausführungsformen sind dabei miteinander kombinierbar, insbesondere einzelne Merkmale davon, wobei der Umfang der Erfindung durch die beigefügten Ansprüche definiert ist.Although the present invention has been described above with reference to the preferred embodiment, it is not limited thereto, but modifiable in many ways. The embodiments described above can be combined with each other, in particular individual features thereof, the scope of the invention being defined by the appended claims.

Dabei wird wenigstens ein Bereich oder mehrere Bereiche des Diffusors 12 bezüglich ihrer Breite b variiert. Dabei werden die Bereiche beispielsweise unter dem Gesichtspunkt ausgewählt, wo unerwünschte Druckpulsationen entstehen, um die ausgewählten Bereiche derart anzupassen, dass jeweils kein oder allenfalls ein geringes Unterdruckgebiet entsteht, um diesen Druckpulsationen entgegen zu wirken.In this case, at least one region or a plurality of regions of the diffuser 12 is varied with respect to its width b. In this case, the regions are selected, for example, from the point of view where undesired pressure pulsations arise in order to adapt the selected regions in such a way that in each case no or at most a small negative pressure region is created in order to counteract these pressure pulsations.

Darüber hinaus weist ein erfindungsgemäßer Diffusor 12 zusätzlich in dem jeweils wenigstens einen Bereich einen variierten Durchmesser bzw. Radius r auf, wie er mit Bezug auf die Fig. 3 und 4 zuvor bereits detailliert beschrieben wurde. Mit anderen Worten, der Querschnitt des Diffusors 12 wird über die Breite b und den Durchmesser bzw. Radius r variiert.In addition, a diffuser 12 according to the invention additionally has a varied diameter or radius r in each of the at least one region, as described with reference to FIGS 3 and 4 previously described in detail. In other words, the cross section of the diffuser 12 is varied over the width b and the diameter or radius r.

Des Weiteren kann hierbei wenigstens die erste und/oder zweite Wand 22, 24 des Diffusors 12 nach außen geneigt und/oder gewölbt ausgebildet sein, um die Breite b des Diffusors 12 zu vergrößern. Die beiden Wände 22, 24 können dabei identisch oder unterschiedlich ausgeformt sein, d.h. beispielsweise mit unterschiedlichen Neigungen bzw. Wölbungen. Dabei können die Wände 22, 24 auch unterschiedliche Formen in diesem Bereich aufweisen. So kann eine Wand 22, 24 geneigt und die andere Wand 22, 24 gewölbt ausgebildet sein, je nach Funktion und Einsatzzweck.Furthermore, in this case at least the first and / or second wall 22, 24 of the diffuser 12 can be outwardly inclined and / or arched in order to increase the width b of the diffuser 12. The two walls 22, 24 may be identical or differently shaped, i. for example, with different inclinations or vaults. The walls 22, 24 may also have different shapes in this area. Thus, one wall 22, 24 inclined and the other wall 22, 24 may be curved, depending on the function and purpose.

Claims (6)

  1. Radial compressor (10), in particular for a turbocharger, comprising
    - a spiral housing (14) and
    - a diffuser (12), the cross section of the diffuser (12) in the region of the transition of the spiral housing (14), therefore in the region of the tongue (20), being varied in such a way that the formation of a negative pressure area in this region is at least reduced, characterized
    in that the diffuser (12) has a greater width (b) in the region of the tongue (20), and
    in that the radius (r) of the diffuser (12) in the region of the tongue (20) is enlarged in such a way that it has a bulge (30) in the manner of an oval.
  2. Radial compressor according to Claim 1,
    characterized in that
    at least one wall (22, 24) or both opposite walls (22, 24) of the diffuser (12) is/are inclined and/or curved outwards.
  3. Radial compressor according to Claim 2,
    characterized in that
    the walls (22, 24) are formed identically or differently with regard to their shape, inclination and/or curvature.
  4. Radial compressor according to either of Claims 2 and 3,
    characterized in that
    the respective wall (22, 24) forms a wedge shape.
  5. Radial compressor according to Claim 4,
    characterized in that
    the wedge shape enlarges outwards.
  6. Turbocharger having a radial compressor (10) according to at least one of Claims 1 to 5.
EP08785006.1A 2007-07-23 2008-07-23 Radial compressor with a diffuser for use in a turbocharger Not-in-force EP2181268B1 (en)

Applications Claiming Priority (2)

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DE102007034236A DE102007034236A1 (en) 2007-07-23 2007-07-23 Centrifugal compressor with a diffuser for use with a turbocharger
PCT/EP2008/006053 WO2009012990A1 (en) 2007-07-23 2008-07-23 Radial compressor with a diffuser for use in a turbocharger

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EP2181268A1 EP2181268A1 (en) 2010-05-05
EP2181268B1 true EP2181268B1 (en) 2018-12-26

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US20100178163A1 (en) 2010-07-15
WO2009012990A1 (en) 2009-01-29
US8545177B2 (en) 2013-10-01
DE102007034236A1 (en) 2009-02-05
JP2010529358A (en) 2010-08-26
JP5124636B2 (en) 2013-01-23

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