Flow passage structure for refrigerant compressor

Information

  • Patent Application
  • 20070140889
  • Publication Number
    20070140889
  • Date Filed
    August 21, 2006
    19 years ago
  • Date Published
    June 21, 2007
    18 years ago
Abstract
A flow passage structure can be disposed in a multi-stage centrifugal refrigerant compressor having a deswirl vane and a return channel bend. The flow passage structure includes a two-way flow passage having a first outlet and a second outlet, for diverging externally injected refrigerant; a first side discharge flow passage connected to the first outlet of the two-way flow passage and having a first side outlet disposed below the deswirl vane, such that the diverged refrigerant can be discharged into the return channel bend and uniformly mixed with the refrigerant in the return channel bend; and a second side discharge flow passage connected to the second outlet of the two-way flow passage and having a second side outlet disposed below the deswirl, vane, such that the diverged refrigerant tan be injected into the return channel bend and uniformly mixed with the refrigerant in the return channel bend.
Description

BRIEF DESCRIPTION OF DRAWINGS


FIG. 1 (PRIOR ART) is a sectional view of a conventional multi-stage centrifugal refrigerant compressor;



FIG. 2 is a sectional view of a multi-stage centrifugal refrigerant compressor with a flow passage structure of the present invention; and



FIG. 3 is a sectional view of the flow passage structure and the deswirl vane according to the present invention.


Claims
  • 1. A flow passage structure disposed in a multi-stage centrifugal refrigerant compressor having a deswirl vane and a return channel bend, the flow passage structure comprising: a two-way flow passage having a first outlet and a second outlet, for diverging externally injected refrigerant;a first side discharge flow passage connected to the first outlet of the two-way flow passage, the first side discharge flow passage having a first side outlet disposed below the deswirl vane such that the refrigerant diverged from the two-way flow passage is allowed to be discharged into the return channel bend and uniformly mixed with the refrigerant in the return channel bend; anda second side discharge flow passage connected to the second outlet of the two-way flow passage, the second side discharge flow passage having a second side outlet disposed below the deswirl vane such that the refrigerant diverged from the two-way flow passage is allowed to be injected into the return channel bend and uniformly mixed with the refrigerant in the return channel bend.
  • 2. The flow passage structure of claim 1, wherein the refrigerant discharged from the first side outlet and the second side outlet is mixingly injected into the return channel bend.
  • 3. The flow passage structure of claim 1, further comprising an induction flow passage connected to the two-way flow passage, for introducing the externally injected refrigerant into the two-way flow passage.
  • 4. The flow passage structure of claim 3, wherein the induction flow passage is connected to an inlet for injection of inter-stage pressure refrigerant.
  • 5. The flow passage structure of claim 3, wherein the induction flow passage is connected to the two-way flow passage at any angle.
  • 6. The flow passage structure of claim 1, wherein the refrigerant in the two-way flow passage is at inter-stage pressure.
  • 7. The flow passage structure of claim 1, wherein the refrigerant in the return channel bend is main-flow refrigerant that has passed through a first stage centrifugal compressor impeller and the deswirl vane of the multi-stage centrifugal compressor.
  • 8. The flow passage structure of claim 7, wherein the main-flow refrigerant enters into the centrifugal refrigerant compressor, passes through the first stage centrifugal compressor impeller, a first stage diffusing flow passage, the deswirl wane, the return channel bend, a second stage centrifugal compressor impeller, a second stage diffusing flow passage, and finally discharges from the centrifugal refrigerant compressor at high pressure.
  • 9. The flow passage structure of claim 8, wherein while passing through the return channel bend, the main-flow refrigerant uniformly mixes with refrigerant from the first and second side outlets.
  • 10. The flow passage structure of claim 1, wherein the first side outlet and the second side outlet are relatively displaced from each other.
  • 11. The flow passage structure of claim 1, wherein the first side outlet is located below an outlet of the deswirl vane.
  • 12. The flow passage structure of claim 1, wherein the second side outlet is located below an outlet of the deswirl vane.
  • 13. The flow passage structure of claim 1, wherein the first side outlet is located near an outlet of the deswirl vane and between blades of the deswirl vane.
  • 14. The flow passage structure of claim 1, wherein the second side outlet is located near an outlet of the deswirl vane and between blades of the deswirl vane.
  • 15. The flow passage structure of claim 1, wherein the two-way flow passage is disposed in horizontal direction.
  • 16. The flow passage structure of claim 1, wherein the multi-stage centrifugal compressor comprises at least two centrifugal compressor impellers and diffusing flow passages.
  • 17. The flow passage structure of claim 1, wherein the multi-stage centrifugal compressor further comprises a volute casing.
  • 18. The flow passage structure of claim 1, wherein the multi-stage centrifugal compressor further comprises a high-speed shaft.
  • 19. The flow passage structure of claim 18, wherein at least a first stage centrifugal compressor impeller and a second stage centrifugal compressor impeller are connected in series to an overhanging cantilever of the high-speed shaft.
  • 20. The flow passage structure of claim 1, wherein the return channel bend is a short flow passage.
Priority Claims (1)
Number Date Country Kind
094144407 Dec 2005 TW national