IP Library Granted Patent US 10,563,515
Granted Patent B2
US 10,563,515 · App. 15/538,051 · Granted Feb 18, 2020

Turbine impeller and variable geometry turbine

Inventors: Takao Yokoyama (Tokyo, JP); Seiichi Ibaraki (Tokyo, JP); Toyotaka Yoshida (Tokyo, JP)
Assignee: MITSUBISHI HEAVY INDUSTRIES ENGINE & TURBOCHARGER, LTD.
F01D5/146F01D17/146F05D2220/40
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Quick Facts
Patent No.
US 10,563,515
App. No.
15/538,051
Granted
Feb 18, 2020
Kind
B2
Abstract

A turbine impeller includes: a hub portion coupled to an end of a rotational shaft; a plurality of main blades disposed at intervals on a peripheral surface of the hub portion; and a short blade disposed between two adjacent main blades among the plurality of main blades. An inter-blade flow channel is formed between the two adjacent main blades so that a fluid flows through the inter-blade flow channel from an outer side toward an inner side of the turbine impeller in a radial direction. In a meridional plane, a hub-side end of a leading edge of the short blade is disposed on an inner side, in the radial direction, of a hub-side end of a leading edge of the main blade.

Claims (37)

1. A turbine impeller, comprising:

a hub portion coupled to an end of a rotational shaft;

a plurality of main blades disposed at intervals on a peripheral surface of the hub portion; and

a short blade disposed between two adjacent main blades among the plurality of main blades,

wherein an inter-blade flow channel is formed between the two adjacent main blades so that a fluid flows through the inter-blade flow channel from an outer side toward an inner side of the turbine impeller in a radial direction,

wherein a hub-side end of a leading edge of the short blade is disposed on an inner side, in the radial direction, of a hub-side end of a leading edge of the main blade, in a meridional plane, and

wherein, in the meridional plane, a hub-side end of a trailing edge of the short blade is positioned on a same position, in an axial direction, as a hub-side end of a trailing edge of the main blade, or the hub-side end of the trailing edge of the short blade is positioned downstream, in the flow direction of the fluid, of the hub-side end of the trailing edge of the main blade.

2. The turbine impeller according to claim 1 ,

wherein the hub-side end of the leading edge of the short blade is positioned in a region which satisfies 0.30<Lh 2 /Lh 1 <0.89, provided that Lh 1 is a distance from the hub-side end of the leading edge of the main blade to the hub-side end of the trailing edge of the main blade in the meridional plane, and Lh 2 is a distance from the hub-side end of the leading edge of the main blade to the hub-side end of the leading edge of the short blade in the meridional plane.

3. The turbine impeller according to claim 2 ,

wherein the hub-side end of the leading edge of the short blade is positioned in a region which satisfies 0.52<Lh 2 /Lh 1 <0.84.

4. The turbine impeller according to claim 3 ,

wherein the hub-side end of the leading edge of the short blade is positioned in a region which satisfies 0.60<Lh 2 /Lh 1 <0.80.

5. The turbine impeller according to claim 1 ,

wherein a shroud-side end of the trailing edge of the short blade is positioned on the trailing edge of the main blade in the meridional plane.

6. The turbine impeller according to claim 1 ,

wherein a blade height of the short blade is lower than a blade height of the main blade.

7. A variable geometry turbine, comprising:

the turbine according to claim 1 ,

a turbine housing for housing the turbine impeller; and

a variable nozzle mechanism for controlling a flow direction of a fluid which flows toward the turbine impeller.

8. A turbine impeller, comprising:

a hub portion coupled to an end of a rotational shaft;

a plurality of main blades disposed at intervals on a peripheral surface of the hub portion; and

a short blade disposed between two adjacent main blades among the plurality of main blades,

wherein an inter-blade flow channel is formed between the two adjacent main blades so that a fluid flows through the inter-blade flow channel from an outer side toward an inner side of the turbine impeller in a radial direction,

wherein, in a meridional plane, a hub-side end of a leading edge of the short blade is disposed on an inner side, in the radial direction, of a hub-side end of a leading edge of the main blade,

wherein, in the meridional plane, a hub-side end of a trailing edge of the short blade is positioned on a same position, in an axial direction, as a hub-side end of a trailing edge of the main blade, or positioned downstream, in a flow direction of the fluid, of the hub-side end of the trailing edge of the main blade, and

wherein the hub-side end of the leading edge of the short blade is positioned in a region which satisfies 0.30<Lh 2 /Lh 1 <0.89, provided that Lh 1 is a distance from the hub-side end of the leading edge of the main blade to the hub-side end of the trailing edge of the main blade in the meridional plane, and Lh 2 is a distance from the hub-side end of the leading edge of the main blade to the hub-side end of the leading edge of the short blade in the meridional plane.

9. A turbine impeller, comprising:

a hub portion coupled to an end of a rotational shaft;

a plurality of main blades disposed at intervals on a peripheral surface of the hub portion; and

a short blade disposed between two adjacent main blades among the plurality of main blades,

wherein an inter-blade flow channel is formed between the two adjacent main blades so that a fluid flows through the inter-blade flow channel from an outer side toward an inner side of the turbine impeller in a radial direction,

wherein, in a meridional plane, a hub-side end of a leading edge of the short blade is disposed on an inner side, in the radial direction, of a hub-side end of a leading edge of the main blade,

wherein, in the meridional plane, a hub-side end of a trailing edge of the short blade is positioned on a same position, in an axial direction, as a hub-side end of a trailing edge of the main blade, or positioned downstream, in a flow direction of the fluid, of the hub-side end of the trailing edge of the main blade, and

wherein a shroud-side end of the trailing edge of the short blade is positioned on the trailing edge of the main blade in the meridional plane.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2018
From: MITSUBISHI HEAVY INDUSTRIES, LTD.
To: MITSUBISHI HEAVY INDUSTRIES ENGINE & TURBOCHARGER, LTD.
Reel/Frame 046031/0662 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2017
From: YOKOYAMA, TAKAO; IBARAKI, SEIICHI; YOSHIDA, TOYOTAKA
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 042759/0134 →
Continuity (1)
Related Publication 20180010464A1 · Jan 11, 2018
Cited By (1)
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