IP Library Granted Patent US 12,601,264
Granted Patent B2
US 12,601,264 · App. 18/061,626 · Granted Apr 14, 2026

Radial expander

Inventor: Franz Holger (Oberhausen, DE)
Assignee: EVERLLENCE SE
F01D5/048F01D1/08F01D1/22
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Quick Facts
Patent No.
US 12,601,264
App. No.
18/061,626
Granted
Apr 14, 2026
Kind
B2
Abstract

A radial expander having a rotor mounted in a housing and comprising multiple blades. The blades together with a radially inner hub contour of a rotor hub and a radially outer housing contour define flow channels for the process gas, which process gas to be expanded enters in a radial direction and from which expanded process gas exits in the axial direction. The radially inner hub contour of the rotor includes a curvature change at least in some circumferential positions seen in the meridional section such that adjacent to a flow leading side of the rotor, the radially inner hub contour, seen in the meridional section, is curved radially to the outside and adjacent to a flow trailing side of the rotor, the radially inner hub contour, seen in the meridional section, is curved radially to the inside.

Claims (25)

1 . A radial expander configured to expand a process gas, comprising:

a housing;

a rotor mounted in the housing, the rotor comprising a plurality of blades;

a hub of the rotor; and

flow channels for the process gas formed by the plurality of blades of the rotor together with a radially inner hub contour of the hub of the rotor and a radially outer housing contour of the housing, the flow channels configured to expand the process gas that enters in a radial direction or substantially in the radial direction and from which expanded process gas exits in an axial direction or substantially in the axial direction,

wherein the radially inner hub contour of the rotor comprises a single curvature change at an axial position seen in a meridional section such that adjacent to a flow leading side of the rotor the radially inner hub contour, seen in the meridional section, is curved radially to the outside and adjacent to a flow trailing side of the rotor, the radially inner hub contour, seen in the meridional section, is curved radially to the inside, and

wherein, as seen circumferentially, between a suction side and a pressure side of each pair of the plurality of blades and between the portion of the hub contour curved radially to the outside and the hub contour curved radially to the inside a reversal portion changes from a convex contour to a concave contour.

2 . The radial expander according to claim 1 , wherein in those circumferential positions, in which the radially inner hub contour of the rotor comprises the single curvature change in the meridional section, the single curvature change is situated in a range between 5% and 45% of a working length of the radially inner hub contour.

3 . The radial expander according to claim 1 , wherein in those circumferential positions, in which the radially inner hub contour of the rotor, seen in the meridional section, comprises the single curvature change, a ratio between a curvature radius of a portion of the radially inner hub contour curved radially to the outside and a hub-side radius of a flow leading edge of a respective blade is greater than 1.

4 . The radial expander according to claim 1 , wherein in those circumferential positions, in which the radially inner hub contour of the rotor, seen in the meridional section, comprises the single curvature change, a ratio between a minimal curvature radius of a portion of the radially inner hub contour curved radially to the inside and a hub-side radius of a flow leading edge of a respective blade is smaller than 2.

5 . The radial expander according to claim 1 , wherein the radially inner hub contour of the rotor, seen in the meridional section, is contoured differently in a circumferential direction.

6 . The radial expander according to claim 5 , wherein the radially inner hub contour of the rotor, seen in the meridional section, is contoured differently in the circumferential direction such that between two circumferentially adjacent blades, the radially inner hub contour of the rotor, seen in first meridional sections, comprises the single curvature change and, seen in second meridional sections, does not comprise any curvature change, so that between each two circumferentially adjacent blades a peak curved radially to the outside and a valley curved radially to the inside are formed.

7 . The radial expander according to claim 5 , wherein the radially inner hub contour of the rotor, seen in the meridional section, is contoured differently in the circumferential direction such that between two circumferentially adjacent blades, a ratio between a curvature radius of a portion of the radially inner hub contour curved radially to the outside and a hub-side radius of a flow leading edge of the blades changes.

8 . The radial expander according to claim 5 , wherein the radially inner hub contour of the rotor, seen in the meridional section, is contoured differently in the circumferential direction in such a manner that between two circumferentially adjacent blades, a ratio between a curvature radius of a portion of the radially inner hub contour curved radially to the inside and a hub-side radius of a flow leading edge of the blades changes.

9 . The radial expander according to claim 5 , wherein the radially inner hub contour of the rotor, seen in the meridional section, is contoured differently in the circumferential direction in such a manner that a position of the single curvature change changes by maximally 15% along a working length of the radially inner hub contour.

10 . The radial expander according to claim 7 , wherein the radially inner hub contour of the rotor between each two circumferentially adjacent blades is cyclically repeated.

11 . The radial expander according to claim 1 , wherein the radially inner hub contour of the rotor, seen in the meridional section, is contoured equally in all circumferential positions.

12 . A radial expander configured to expand a process gas, comprising:

a housing;

a rotor mounted in the housing, the rotor comprising a plurality of blades;

a hub of the rotor; and

flow channels for the process gas formed by the plurality of blades of the rotor together with a radially inner hub contour of the hub of the rotor and a radially outer housing contour of the housing, the flow channels configured to expand the process gas that enters in a radial direction or substantially in the radial direction and from which expanded process gas exits in an axial direction or substantially in the axial direction,

wherein the radially inner hub contour of the rotor comprises a single curvature change seen in a meridional section such that adjacent to a flow leading side of the rotor the radially inner hub contour, seen in the meridional section, is curved radially to the outside and adjacent to a flow trailing side of the rotor, the radially inner hub contour, seen in the meridional section, is curved radially to the inside,

wherein in those circumferential positions, in which the radially inner hub contour of the rotor, seen in the meridional section, comprises the single curvature change, a minimal curvature radius of a portion of the radially inner hub contour curved radially to the inside is situated between 5% and 30%, of a working length of the radially inner hub contour after the single curvature change.

13 . The radial expander according to claim 12 , wherein the minimal curvature radius of a portion of the radially inner hub contour curved radially to the inside is situated between 10% and 15% of the working length of the radially inner hub contour after the single curvature change.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2025
From: MAN ENERGY SOLUTIONS SE
To: EVERLLENCE SE
Reel/Frame 072914/0273 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2022
From: HOLGER, FRANZ, DR.
To: MAN ENERGY SOLUTIONS SE
Reel/Frame 061976/0689 →
Priority Claims (1)
DE 10 2021 132 142.5 · Dec 7, 2021 · national
Continuity (1)
Related Publication 20230175400A1 · Jun 8, 2023
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