Claims
- 1. A multistage compressor comprised of a first guided rotor compressor stage and a second guided rotor compressor stage, wherein said first guided rotor compressor stage is comprised of a first guided rotor, wherein said second guided rotor compressor stage is comprised of a second guided rotor, and wherein:(a) each of said first guided rotor and said second guided rotor is mounted on an eccentric, wherein said eccentric is mounted on a shaft; and (b) each of said first guided rotor and said second guided rotor is comprised of a first side, a second side, and a third side, a first partial bore disposed at the intersection of said first side and said second side, a second partial bore disposed at the intersection of said second side and said third side, a third partial bore disposed at the intersection of said third side and said first side, a first roller disposed and rotatably mounted within said first partial bore, a second roller disposed and rotatably mounted within said second partial bore, and a third roller disposed and rotatably mounted within said third partial bore wherein: 1. each of said first guided rotor and said second guided rotor is comprised of a front face, a back face, said first side, said second side, and said third side, wherein: (a) a first opening is formed between and communicates between said front face and said first side, (b) a second opening is formed between and communicates between said back face and said first side, wherein each of said first opening and said second opening is substantially equidistant and symmetrical between said first partial bore and said second partial bore, (c) a third opening is formed between and communicates between said front face and said second side, (d) a fourth opening is formed between and communicates between said back face and said second side, wherein each of said third opening and said fourth opening is substantially equidistant and symmetrical between said second partial bore and said third partial bore, (e) a fifth opening is formed between and communicates between said front face and said third side, and (f) a sixth opening is formed between and communicates between said back face and said third side, wherein each of said fifth opening and said sixth opening is substantially equidistant and symmetrical between said third partial bore and said first partial bore.
- 2. The multistage compressor as recited in claim 1, wherein said first roller is a first hollow roller, said second roller is a second hollow roller, and said third roller is a third hollow roller.
- 3. The multistage compressor as recited in claim 2, wherein said multistage compressor is comprised of a third compressor stage, said third compressor stage is comprised of a third guided rotor, said third guided rotor is mounted on an eccentric, said eccentric is mounted on a shaft, and said third guided rotor is comprised of a first side, a second side, and a third side, a first partial bore disposed at the intersection of said first side and said second side, a second partial bore disposed at the intersection of said second side and said third side, a third partial bore disposed at the intersection of said third side and said first side, a first roller disposed and rotatably mounted within said first partial bore, a second roller disposed and rotatably mounted within said second partial bore, and a third roller disposed and rotatably mounted within said third partial bore, wherein:1. said third guided rotor is comprised of a front face, a back face, said first side, said second side, and said third side, wherein: (a) a first opening is formed between and communicates between said front face and said first side, (b) a second opening is formed between and communicates between said back face and said first side, wherein each of said first opening and said second opening is substantially equidistant and symmetrical between said first partial bore and said second partial bore, (c) a third opening is formed between and communicates between said front face and said second side, (d) a fourth opening is formed between and communicates between said back face and said second side, wherein each of said third opening and said fourth opening is substantially equidistant and symmetrical between said second partial bore and said third partial bore, (e) a fifth opening is formed between and communicates between said front face and said third side, and (f) a sixth opening is formed between and communicates between said back face and said third side, wherein each of said fifth opening and said sixth opening is substantially equidistant and symmetrical between said third partial bore and said first partial bore.
- 4. The multistage compressor as recited in claim 2, further comprising means for conveying gas from said first guided rotor stage to said second guided rotor stage.
- 5. The multistage compressor as recited in claim 3, further comprising means for conveying gas from said first guided rotor stage to said second guided rotor stage.
- 6. The multistage compressor as recited in claim 4, further comprising means for conveying gas from said first guided rotor stage to a location outside of said multistage compressor.
- 7. The multistage compressor as recited in claim 4, further comprising means for conveying gas from said first guided rotor stage to a location outside of said multistage compressor, treating said gas outside of said multistage compressor, and thereafter conveying said treated gas from outside said multistage compressor to inside said multistage compressor.
- 8. The multistage compressor as recited in claim 7, further comprising means for cooling said gas outside of said multistage compressor.
- 9. The multistage compressor as recited in claim 7, further comprising cleaning said gas outside of said multistage compressor.
- 10. The multistage compressor as recited in claim 8, further comprising cleaning said gas outside of said multistage compressor.
- 11. The multistage compressor as recited in claim 1, wherein said first guided rotor stage is coupled to said second guided rotor stage.
- 12. A hermetic compressor assembly, comprised of a hermetic casing and disposed therein a guided rotor compressor assembly, wherein said guided rotor compressor assembly is comprised of a housing comprising a curved inner surface with a profile equidistant from a trochoidal curve, an eccentric mounted on a shaft disposed within said housing, a first rotor mounted on said eccentric shaft which is comprised of a first side, a second side, and a third side, a first partial bore disposed at the intersection of said first side and said second side, a second partial bore disposed at the intersection of said second side and said third side, a third partial bore disposed at the intersection of said third side and said first side, a first roller disposed and rotatably mounted within said first partial bore, a second roller disposed and rotatably mounted within said second partial bore, and a third roller disposed and rotatably mounted within said third partial bore, wherein said rotor is comprised of a front face, a back face, said first side, said second side, and said third side, and wherein:(a) a first opening is formed between and communicates between said front face and said first side, (b) a second opening is formed between and communicates between said back face and said first side, wherein each of said first opening and said second opening is substantially equidistant and symmetrical between said first partial bore and said second partial bore, (c) a third opening is formed between and communicates between said front face and said second side, (d) a fourth opening is formed between and communicates between said back face and said second side, wherein each of said third opening and said fourth opening is substantially equidistant and symmetrical between said second partial bore and said third partial bore, (e) a fifth opening is formed between and communicates between said front face and said third side, and (f) a sixth opening is formed between and communicates between said back face and said third side, wherein each of said fifth opening and said sixth opening is substantially equidistant and symmetrical between said third partial bore and said first partial bore; (g) each of said first partial bore, said second partial bore, and said third partial bore is comprised of a centerpoint which, as said rotary device rotates, moves along said trochoidal curve; (h) each of said first opening, said second opening, said third opening, said fourth opening, said fifth opening, and said sixth opening has a substantially U-shaped cross-sectional shape defined by a first linear side, a second linear side, and an arcuate section joining said first linear side and said second linear side, wherein: 1. said first linear side and said second linear side are disposed with respect to each other at an angle of less than ninety degrees, and 2. said substantially U-shaped cross sectional shape has a depth which is at least equal to its width; (i) the diameter of said first roller is equal to the diameter of said second roller, and the diameter of said second roller is equal to the diameter of said third roller; (j) the widths of each of said first opening, said second opening, said third opening, said fourth opening, said fifth opening, and said sixth opening are substantially the same, and the width of each of said openings is less than the diameter of said first roller; and (f) each of said first side, said second side, and said third side has substantially the same geometry and size and is a composite shape comprised of a first section and a second section, wherein said first section has a shape which is different from said second section.
- 13. The hermetic compressor as recited in claim 12, wherein each of said first roller, said second roller, and said third roller is a hollow roller.
- 14. The hermetic compressor as recited in claim 13, further comprising an electric motor connected to a motor shaft.
- 15. The hermetic compressor as recited in claim 14, wherein said motor shaft is coupled to a compressor shaft.
- 16. The hermetic compressor as recited in claim 15, wherein said compressor shaft is operatively connected to a first rotor and a second rotor.
- 17. A compound compressor assembly comprised of a guided rotor compressor assembly coupled to a non-guided rotor compressor assembly, wherein said guided rotor compressor assembly is comprised of a housing comprising a curved inner surface with a profile equidistant from a trochoidal curve, an eccentric mounted on a shaft disposed within said housing, a first rotor mounted on said eccentric shaft which is comprised of a first side, a second side, and a third side, a first partial bore disposed at the intersection of said first side and said second side, a second partial bore disposed at the intersection of said second side and said third side, a third partial bore disposed at the intersection of said third side and said first side, a first roller disposed and rotatably mounted within said first partial bore, a second roller disposed and rotatably mounted within said second partial bore, and a third roller disposed and rotatably mounted within said third partial bore, and wherein:(a) said rotor is comprised of a front face, a back face, said first side, said second side, and said third side, wherein: 1. a first opening is formed between and communicates between said front face and said first side, 2. a second opening is formed between and communicates between said back face and said first side, wherein each of said first opening and said second opening is substantially equidistant and symmetrical between said first partial bore and said second partial bore, 3. a third opening is formed between and communicates between said front face and said second side, 4. a fourth opening is formed between and communicates between said back face and said second side, wherein each of said third opening and said fourth opening is substantially equidistant and symmetrical between said second partial bore and said third partial bore, 5. a fifth opening is formed between and communicates between said front face and said third side, and 6. a sixth opening is formed between and communicates between said back face and said third side, wherein each of said fifth opening and said sixth opening is substantially equidistant and symmetrical between said third partial bore and said first partial bore; (b) each of said first partial bore, said second partial bore, and said third partial bore is comprised of a centerpoint which, as said rotary device rotates, moves along said trochoidal curve; (c) each of said first opening, said second opening, said third opening, said fourth opening, said fifth opening, and said sixth opening has a substantially U-shaped cross-sectional shape defined by a first linear side, a second linear side, and an arcuate section joining said first linear side and said second linear side, wherein: 1. said first linear side and said second linear side are disposed with respect to each other at an angle of less than ninety degrees, and 2. said substantially U-shaped cross sectional shape has a depth which is at least equal to its width; (d) the diameter of said first roller is equal to the diameter of said second roller, and the diameter of said second roller is equal to the diameter of said third roller; (e) the widths of each of said first opening, said second opening, said third opening, said fourth opening, said fifth opening, and said sixth opening are substantially the same, and the width of each of said openings is less than the diameter of said first roller; and (f) each of said first side, said second side, and said third side has substantially the same geometry and size and is a composite shape comprised of a first section and a second section, wherein said first section has a shape which is different from said second section.
- 18. The compound compressor as recited in claim 17, wherein each of said first roller, said second roller, and said third roller is a hollow roller.
- 19. The compound compressor as recited in claim 18, further comprising a compound shaft.
CROSS-REFERENCE TO RELATED PATENT APPLICATIONS
This application is a continuation-in-part of applicants' copending patent application U.S. Ser. No. 09/672,804, filed on Sep. 28, 2000, now U.S. Pat. No. 6,494,043, which in turn was a continuation-in-part of applicants' copending patent application 09/536,332, filed on Mar. 24, 2000 now U.S. Pat. No. 6,266,952, which was a continuation-in-part of copending patent application U.S. Ser. No. 09/416,291, filed on Oct. 14, 1999 now U.S. Pat. No. 6,499,301, which was a continuation-in-part of patent application U.S. Ser. No. 09/396,034, filed on Sep. 15, 1999 now U.S. Pat. No. 6,301,898, which in turn was a continuation-in-part of patent application U.S. Ser. No. 09/181,307, filed on Oct. 28, 1998 now abandoned.
This application is also a continuation-in-part of applicant's copending patent application U.S. Ser. No. 09/441,312, filed on Nov. 16, 1999 now U.S. Pat. No. 6,213,744.
US Referenced Citations (20)
Continuation in Parts (6)
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09/672804 |
Sep 2000 |
US |
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10/316327 |
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US |
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09/536332 |
Mar 2000 |
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09/416291 |
Oct 1999 |
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Sep 1999 |
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09/416291 |
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10/316327 |
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09/441312 |
Nov 1999 |
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10/316327 |
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