IP Library Granted Patent US 11,066,982
Granted Patent B2
US 11,066,982 · App. 16/596,126 · Granted Jul 20, 2021

Centrifugal compressor and turbocharger

Inventors: Isao Tomita (Tokyo, JP); Yoshihiro Hayashi (Tokyo, JP)
Assignee: MITSUBISHI HEAVY INDUSTRIES, LTD.
F02B33/40F04D17/10F04D27/0215F04D27/0223F04D29/284F04D29/4206F04D29/4213F04D29/685F05B2220/40F05B2240/14F05B2260/60F05D2220/40F05D2240/14
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Quick Facts
Patent No.
US 11,066,982
App. No.
16/596,126
Granted
Jul 20, 2021
Kind
B2
Abstract

A centrifugal compressor operable in a wide operation range under a condition accompanied with pulsations of a pressure and a flow rate. The centrifugal compressor has a casing including at least one recirculation channel that includes a first inlet slit connected to an air flow passage on a downstream side of a leading edge in an air flow direction of the air flow passage, a second inlet slit connected to the air flow passage on a downstream side of the first inlet slit in the air flow direction of the air flow passage, a first vane disposed on a downstream side of the first inlet slit or in the first inlet slit in the at least one recirculation channel, and a second vane disposed on a downstream side of the second inlet slit or in the second inlet slit in the at least one recirculation channel.

Claims (33)

1. A centrifugal compressor comprising:

an impeller; and

a casing housing the impeller and internally forming an air flow passage to guide air to the impeller,

wherein the casing includes

at least one recirculation channel for recirculating a part of the air flowing through the air flow passage from a downstream side of a leading edge of a blade of the impeller to an upstream side of the leading edge,

wherein the at least one recirculation channel includes:

a first inlet slit connected to the air flow passage on the downstream side of the leading edge in an air flow direction of the air flow passage;

a second inlet slit connected to the air flow passage on a downstream side of the first inlet slit in the air flow direction of the air flow passage;

a first vane disposed on the downstream side of the first inlet slit or in the first inlet slit in the at least one recirculation channel; and

a second vane disposed on a downstream side of the second inlet slit or in the second inlet slit in the at least one recirculation channel, and

wherein α1>α2 is satisfied, where α1 is an angle between a chordwise direction of the first vane and a circumferential direction with respect to a rotational shaft of the impeller at a position of a leading edge of the first vane, and α2 is an angle between a chordwise direction of the second vane and the circumferential direction with respect to the rotational shaft of the impeller at a position of a leading edge of the second vane.

2. The centrifugal compressor according to claim 1 ,

wherein the at least one recirculation channel includes a first recirculation channel including the first inlet slit, the second inlet slit, the first vane, and the second vane, and

wherein the first recirculation channel includes:

an outlet slit connected to the air flow passage on an upstream side of the leading edge of the blade in the air flow direction of the air flow passage; and

an outer peripheral space portion disposed on an outer peripheral side of the air flow passage, and connected to each of the first inlet slit, the second inlet slit, and the outlet slit.

3. The centrifugal compressor according to claim 2 ,

wherein the first vane is disposed in the first inlet slit, and the second vane is disposed in the second inlet slit.

4. The centrifugal compressor according to claim 1 ,

wherein the at least one recirculation channel includes a first recirculation channel including the first inlet slit and the first vane, and a second recirculation channel including the second inlet slit and the second vane,

wherein the first recirculation channel includes a first outlet slit connected to the air flow passage on the upstream side of the leading edge of the blade in the air flow direction of the air flow passage, and a first outer peripheral space portion disposed on an outer peripheral side of the air flow passage and connected to each of the first inlet slit and the first outlet slit, and

wherein the second recirculation channel includes a second outlet slit connected to the air flow passage on an upstream side of the first outlet slit in the air flow direction of the air flow passage, and a second outer peripheral space portion disposed on an outer peripheral side of the first outer peripheral space portion and connected to each of the second inlet slit and the second outlet slit.

5. The centrifugal compressor according to claim 4 ,

wherein the first vane is disposed in the first outer peripheral space portion, and the second vane is disposed in the second outer peripheral space portion.

6. The centrifugal compressor according to claim 4 ,

wherein the first outlet slit has a width which is smaller than a width of the second outlet slit.

7. The centrifugal compressor according to claim 1 ,

wherein the first inlet slit has a width which is smaller than a width of the second inlet slit.

8. The centrifugal compressor according to claim 1 ,

wherein the first vane and the second vane are arranged so as to satisfy 10°≤α1−α2≤25°.

9. A turbocharger comprising:

a turbine; and

the centrifugal compressor according to claim 1 connected to the turbine via a rotational shaft.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 8, 2019
From: TOMITA, ISAO; HAYASHI, YOSHIHIRO
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 050656/0070 →
Priority Claims (1)
JP JP2019-033442 · Feb 27, 2019 · national
Continuity (1)
Related Publication 20200271045A1 · Aug 27, 2020
Cited By (1)
US 12,196,216