Centrifugal turbo-compressor having a gas flow path including a relaxation chamber
US-2020132079-A1 · Apr 30, 2020 · US
US12320366B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12320366-B2 |
| Application number | US-202117997882-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 29, 2021 |
| Priority date | May 8, 2020 |
| Publication date | Jun 3, 2025 |
| Grant date | Jun 3, 2025 |
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The centrifugal compressor has a housing with two or more compressor inlets for process gas to be compressed; an impeller is located inside the housing so to receive an inlet flow of process gas from the two compressor inlets through a plenum chamber and increases gas pressure as process gas flows in the impeller; thanks to the two or more inlets, uniformity of flow at the inlets may be achieved through short collector pipes fluidly connected upstream of the inlets; piping of a compressor system including such compressor is made easy as it is subject to fewer constraints.
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The invention claimed is: 1. A centrifugal compressor, comprising: a housing having a first inlet and a second inlet, the housing forming a plenum chamber with an outlet spaced apart from the first inlet and the second inlet a shaft disposed in the plenum chamber; an impeller coupled to the shaft and located inside the housing downstream of the plenum chamber, the impeller arranged to increase gas pressure as process gas flows past the impeller; and a first septum and a second septum disposed in the plenum chamber, the first septum and the second septum having a body extending from a first end coupled to the housing into the plenum chamber towards the shaft, the body terminating at a second end with a first portion secured to the housing and a second portion disposed in the outlet. 2. The centrifugal compressor of claim 1 , wherein the first inlet and the second inlet have substantially equal cross-sections. 3. The centrifugal compressor of claim 1 , wherein the shaft rotates on a rotation axis, wherein the centrifugal compressor has a meridional plane arranged vertically with respect to a working configuration for said centrifugal compressor and containing the rotation axis, and wherein the first inlet and the second inlet are symmetrically arranged on either side of the meridional plane. 4. The centrifugal compressor of claim 1 , wherein the plenum chamber has a cylindrical shape, a frustoconical shape, or an annular shape, and wherein the first inlet and the second inlet are located on a lateral surface of the plenum chamber. 5. The centrifugal compressor of claim 2 , wherein the first septum and the second septum are arranged on the meridional plane. 6. The centrifugal compressor of claim 1 , wherein the first septum is close to the first inlet and the second inlet and the second septum is remote from the first inlet and the second inlet. 7. The centrifugal compressor of claim 1 , wherein the housing has a radially outer wall and a radially inner wall facing the radially outer wall and proximate the shaft, wherein the radially outer wall and the radially inner wall define the plenum chamber, and wherein the outlet of the plenum faces the radially outer wall and the first inlet and the second inlet and is adjacent the radially inner wall. 8. The centrifugal compressor of claim 1 , wherein the housing forms a shaped connecting channel that terminates on one end at the outlet to the plenum chamber. 9. The centrifugal compressor of claim 1 , further comprising: two collectors protruding from the housing, each collector comprising: a collector inlet arranged to be fluidly coupled to a suction duct, and a collector outlet fluidly coupled to the inlet, wherein the two collectors are configured to reduce or eliminate non-uniformity in a flow of process gas from the collector inlet to the collector outlet. 10. The centrifugal compressor of claim 9 , wherein each collector defines a divergent duct that diverges from the collector inlet to the collector outlet. 11. The centrifugal compressor of claim 9 , wherein a distance between the collector inlet and the collector outlet is between about 1 and about 3 times a diameter of the collector inlet. 12. The centrifugal compressor of claim 9 , wherein the two collectors comprise end portions adjacent to the collector outlet, wherein the end portions extend longitudinally along respective straight lines, and wherein the straight lines form an angle an angle in a range of from about 15° to about 30°. 13. A compressor system, comprising: a centrifugal compressor of claim 1 . 14. The centrifugal compressor of claim 1 , wherein the first end of first septum is between the first inlet and the second inlet. 15. The centrifugal compressor of claim 1 , wherein the first septum and the second septum reside on opposite sides of the plenum chamber. 16. The centrifugal compressor of claim 1 , wherein the first end of the first septum couples to a first location of the housing and the first end of the second septum couples to a second location of the housing that is different from the first location. 17. The centrifugal compressor of claim 9 , wherein an area ratio between the collector inlet cross-section and the collector outlet cross-section is between about 1.0 and about 1.3. 18. The centrifugal compressor of claim 9 , wherein the two collectors comprise end portions adjacent to the collector outlet, wherein the end portions extend longitudinally along respective straight lines, and wherein the straight lines form an angle an angle in a range of from about 15° to about 30°, and wherein the straight lines intersect at a point of intersection preferably remote from an axis of the plenum chamber.
especially adapted for elastic fluid pumps · CPC title
for compressing or evacuating · CPC title
gaseous, i.e. compressible · CPC title
for compressors · CPC title
especially adapted for elastic fluid pumps · CPC title
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