Claims
- 1. A muffler for reducing noise in an exhaust stream, comprising:a first sound cancellation chamber comprising a first major surface with a first intake aperture and a first peripheral edge, and a second major surface with a second intake aperture and a second peripheral edge, a first dividing inlet operable to receive said exhaust stream and split said exhaust stream into a first exhaust stream and a second exhaust stream, said first dividing inlet comprising a first inlet channel operable to direct said first exhaust stream into said first intake aperture on a first common counter-flow centerline in a first flow direction, and a second inlet channel operable to direct said second exhaust stream into said second intake aperture on said first common counter-flow centerline in a second flow direction that is opposite said first flow direction such that said second exhaust stream and said first exhaust stream meet substantially at a first noise cancellation point on said first common counter-flow centerline that is located between said first major surface and said second major surface of said first sound cancellation chamber; and an outlet collector ring coupled to said first peripheral edge and said second peripheral edge of said first sound cancellation chamber such that said outlet collector ring is operable to receive and expel exhaust from said first sound cancellation chamber.
- 2. The muffler of claim 1, wherein:said first major surface comprises a first plurality of reflector walls operable to direct sound toward said first noise cancellation point.
- 3. The muffler of claim 1, wherein:said first major surface comprises a first plurality of reflector walls operable to direct sound toward said first noise cancellation point, and said second major surface comprises a second plurality of reflector walls operable to direct sound toward said first noise cancellation point.
- 4. The muffler of claim 1, wherein:said first outlet collector ring is operable to substantially direct said exhaust received from said first sound cancellation chamber circumferentially about said first sound cancellation chamber toward a first outlet aperture of said first outlet collector ring.
- 5. The muffler of claim 1, wherein said first outlet collector ring is operable to expel said exhaust received from said first sound cancellation chamber through a first outlet aperture of said first outlet collector ring, said muffler further comprising:a second sound cancellation chamber comprising a third major surface with a third intake aperture and a third peripheral edge, and a fourth major surface with a fourth intake aperture and a fourth peripheral edge, a second dividing inlet operable to receive said exhaust from said first outlet aperture of said first outlet collector ring stream and split said exhaust from said first outlet aperture into a third exhaust stream and a fourth exhaust stream, said second dividing inlet comprising a third inlet channel operable to direct said third exhaust stream into said third intake aperture on a second common counter-flow centerline in a third flow direction, and a fourth inlet channel operable to direct said fourth exhaust stream into said fourth intake aperture on said second common counter-flow centerline in a fourth flow direction that is opposite said third flow direction such that said fourth exhaust stream and said third exhaust stream meet substantially at a second noise cancellation point on said second common counter-flow centerline that is located between said third major surface and said fourth major surface of said second sound cancellation chamber; and a second outlet collector ring coupled to said third peripheral edge and said fourth peripheral edge of said second sound cancellation chamber such that said second outlet collector ring is operable to receive and expel exhaust from said second sound cancellation chamber.
- 6. The muffler of claim 1, further comprising:a second sound cancellation chamber comprising a third major surface with a third intake aperture and a third peripheral edge, and a fourth major surface with a fourth intake aperture and a fourth peripheral edge, and a second outlet collector ring coupled to said third peripheral edge and said fourth peripheral edge of said second sound cancellation chamber such that said second outlet collector ring is operable to receive and expel exhaust from said second sound cancellation chamber, wherein said first dividing inlet being further operable to split said exhaust stream into a third exhaust stream and a fourth exhaust stream, said first dividing inlet further comprising a third inlet channel operable to direct said third exhaust stream into said third intake aperture on a second common counter-flow centerline in a third flow direction, and a fourth inlet channel operable to direct said fourth exhaust stream into said fourth intake aperture on said second common counter-flow centerline in a fourth flow direction that is opposite said third flow direction such that said fourth exhaust stream and said third exhaust stream meet substantially at a second noise cancellation center point on said second common counter-flow centerline that is located between said third major surface and said fourth major surface of said second sound cancellation chamber.
- 7. The muffler of claim 1, wherein said first sound cancellation chamber comprises:a reflector wall coupled between said first major surface and said second major surface that reflects sound towards said first noise cancellation point, said reflector wall comprising a flow control aperture ring operable to apportion flow of said exhaust from said first sound cancellation chamber into said first outlet collector ring.
- 8. A muffler for reducing noise in an exhaust stream, comprising:a first sound cancellation chamber comprising a first major surface with a first intake aperture, a first peripheral edge, and a first plurality of reflector walls operable to direct sound toward said first intake aperture, and a second major surface with a second intake aperture, a second peripheral edge, and a second plurality of reflector walls operable to direct sound toward said second intake aperture; a first dividing inlet operable to receive said exhaust stream and split said exhaust stream into a first exhaust stream and a second exhaust stream, said first dividing inlet comprising a first inlet channel operable to direct said first exhaust stream into said first intake aperture of said first sound cancellation chamber, and a second inlet channel operable to direct said second exhaust stream into said second intake aperture of said first sound cancellation chamber; and a first outlet collector ring coupled to said first peripheral edge and said second peripheral edge of said first sound cancellation chamber such that said first outlet collector ring is operable to receive and expel exhaust from said first sound cancellation chamber.
- 9. The muffler of claim 8, wherein:said first outlet collector ring is operable to substantially direct said exhaust received from said first sound cancellation chamber circumferentially about said first sound cancellation chamber toward a first outlet aperture of said first outlet collector ring.
- 10. The muffler of claim 8, wherein said first outlet collector ring is operable to expel said exhaust received from said first sound cancellation chamber through a first outlet aperture of said first outlet collector ring, said muffler further comprising:a second sound cancellation chamber comprising a third major surface with a third intake aperture and a third peripheral edge, and a fourth major surface with a fourth intake aperture and a fourth peripheral edge, a second dividing inlet operable to receive said exhaust from said first outlet aperture of said first outlet collector ring stream and split said exhaust from said first outlet aperture into a third exhaust stream and a fourth exhaust stream, said second dividing inlet comprising a third inlet channel operable to direct said third exhaust stream into said third intake aperture, and a fourth inlet channel operable to direct said fourth exhaust stream into said fourth intake aperture; and a second outlet collector ring coupled to said third peripheral edge and said fourth peripheral edge of said second sound cancellation chamber such that said second outlet collector ring is operable to receive and expel exhaust from said second sound cancellation chamber.
- 11. The muffler of claim 8, further comprising:a second sound cancellation chamber comprising a third major surface with a third intake aperture and a third peripheral edge, and a fourth major surface with a fourth intake aperture and a fourth peripheral edge, and a second outlet collector ring coupled to said third peripheral edge and said fourth peripheral edge of said second sound cancellation chamber such that said second outlet collector ring is operable to receive and expel exhaust from said second sound cancellation chamber, wherein said first dividing inlet being further operable to split said exhaust stream into a third exhaust stream and a fourth exhaust stream, said first dividing inlet further comprising a third inlet channel operable to direct said third exhaust stream into said third intake aperture, and a fourth inlet channel operable to direct said fourth exhaust stream into said fourth intake aperture.
- 12. A muffler for reducing noise in an exhaust stream, comprising:a first sound cancellation chamber comprising a first major circular surface with a first central intake aperture and a first peripheral edge,and a second major circular surface with a second central intake aperture and a second peripheral edge, said second major circular surface arranged substantially parallel with said first major circular surface, said first major circular surface and said second major circular surface operable to spread a first exhaust stream received via said first central intake aperture and a second exhaust stream received via said second central intake aperture radially outward toward said first peripheral edge and said second peripheral edge; a first dividing inlet operable to receive said exhaust stream and split said exhaust stream into said first exhaust stream and said second exhaust stream, said first dividing inlet comprising a first inlet channel operable to direct said first exhaust stream into said first central intake aperture of said first sound cancellation chamber, and a second inlet channel operable to direct said second exhaust stream into said second central intake aperture of said second cancellation chamber; and a first outlet collector ring having a first outlet aperture and coupled to said first peripheral edge and said second peripheral edge of said first sound cancellation chamber, said first outlet collector ring operable to receive exhaust from said first sound cancellation chamber and substantially direct said exhaust circumferentially about said first sound cancellation chamber toward said first outlet aperture.
- 13. The muffler of claim 12, wherein:said first major circular surface of said first sound cancellation chamber comprises a first plurality of reflector walls operable to direct sound toward said first noise cancellation point.
- 14. The muffler of claim 12, further comprising:a second sound cancellation chamber comprising a third major surface with a third intake aperture and a third peripheral edge, and a fourth major surface with a fourth intake aperture and a fourth peripheral edge, a second dividing inlet operable to receive said exhaust from said first outlet aperture of said first outlet collector ring stream and split said exhaust from said first outlet aperture into a third exhaust stream and a fourth exhaust stream, said second dividing inlet comprising a third inlet channel operable to direct said third exhaust stream into said third intake aperture, and a fourth inlet channel operable to direct said fourth exhaust stream into said fourth intake aperture; and a second outlet collector ring having a second outlet aperture and coupled to said third peripheral edge and said fourth peripheral edge of said second sound cancellation chamber, said second outlet collector ring operable to receive exhaust from said second sound cancellation chamber and substantially direct said exhaust circumferentially about said second sound cancellation chamber toward said second outlet aperture.
- 15. The muffler of claim 12, further comprising:a second sound cancellation chamber comprising a third major surface with a third intake aperture and a third peripheral edge, and a fourth major surface with a fourth intake aperture and a fourth peripheral edge, and a second outlet collector ring having a second outlet aperture and coupled to said third peripheral edge and said fourth peripheral edge of said second sound cancellation chamber, said second outlet collector ring operable to receive exhaust from said second sound cancellation chamber and substantially direct said exhaust circumferentially about said second sound cancellation chamber toward said second outlet aperture, wherein said first dividing inlet is further operable to split said exhaust stream into a third exhaust stream and a fourth exhaust stream, said first dividing inlet further comprising a third inlet channel operable to direct said third exhaust stream into said third intake aperture, and a fourth inlet channel operable to direct said fourth exhaust stream into said fourth intake aperture.
- 16. A muffler for reducing noise in an exhaust stream, comprising:a first sound cancellation chamber comprising a first major surface with a first intake aperture and a first peripheral edge, a second major surface with a second peripheral edge, said second major surface arranged opposite said first intake aperture and shaped to reflect sound received from said first intake aperture toward said first intake aperture, and a first reflector wall coupled between said first major surface and said second major surface that reflects sound towards said first intake aperture; a first inlet operable to receive said exhaust stream and direct said exhaust stream into said first intake aperture of said first sound cancellation chamber; and a first outlet collector ring coupled to said first peripheral edge and said second peripheral edge of said first sound cancellation chamber such that said first outlet collector ring is operable to receive and expel exhaust from said first sound cancellation chamber, wherein said first reflector wall of said first sound cancellation chamber comprises a flow control aperture ring operable to apportion flow of said exhaust from said first sound cancellation chamber into said first outlet collector ring.
- 17. The muffler of claim 16, wherein:said first major surface of said first sound cancellation chamber comprises a first plurality of reflector walls operable to direct sound toward said first intake aperture.
- 18. The muffler of claim 16, wherein:said first outlet collector ring is operable to substantially direct said exhaust received from said first sound cancellation chamber circumferentially about said first sound cancellation chamber toward a first outlet aperture of said first outlet collector ring.
- 19. The muffler of claim 16, wherein said first outlet collector ring is operable to expel said exhaust received from said first sound cancellation chamber through a first outlet aperture of said first outlet collector ring, said muffler further comprising:a second sound cancellation chamber comprising a third major surface with a second intake aperture and a third peripheral edge, a fourth major surface with a fourth peripheral edge, said fourth major surface arranged opposite said second intake aperture and shaped to reflect sound received from said second intake aperture toward said second intake aperture, and a second reflector wall coupled between said third major surface and said fourth major surface that reflects sound towards said second intake aperture; a second inlet operable to receive said exhaust from said first outlet aperture of said first outlet collector ring and direct said exhaust into said second intake aperture of said second sound cancellation chamber; and a second outlet collector ring coupled to said third peripheral edge and said fourth peripheral edge of said second sound cancellation chamber such that said second outlet collector ring is operable to receive and expel exhaust from said second sound cancellation chamber, wherein said second reflector wall of said first sound cancellation chamber comprises a second flow control aperture ring operable to apportion flow of said exhaust from said second sound cancellation chamber into said second outlet collector ring.
- 20. The muffler of claim 16, wherein said first outlet collector ring is operable to expel said exhaust received from said first sound cancellation chamber through a first outlet aperture of said first outlet collector ring, said muffler further comprising:a ringed shaped dispersion chamber coupled to said first outlet aperture of said first outlet collector ring; an outlet collection chamber coupled to said ringed shaped dispersion chamber and operable to receive exhaust from said ringed shaped dispersion chamber and expel said exhaust received from said ringed shaped dispersion chamber through a second outlet aperture of said outlet collection chamber, said outlet collection chamber comprising a second reflector wall that directs sound toward said ringed shaped dispersion chamber.
- 21. A method of reducing noise in an exhaust stream, comprising the steps of:(a) splitting said exhaust stream into a first exhaust stream and a second exhaust stream that are substantially equal; (b) directing said first exhaust stream into a sound cancellation chamber on a common counter-flow centerline in a first flow direction; (c) directing said second exhaust stream into said sound cancellation chamber on said common counter-flow centerline in a second flow direction that is opposite to said first flow direction such that said second exhaust stream meets said first exhaust stream at a noise cancellation center point on said common-flow centerline inside said first sound cancellation chamber; (d) spreading said first exhaust stream and said sound exhaust stream radially toward a periphery of said second cancellation chamber; (e) collecting said exhaust from said periphery of said sound cancellation chamber in an outlet collector ring disposed generally radially outwardly of the first sound cancellation chamber; and (f) expelling exhaust from said outer collector ring.
- 22. The method of claim 21, further comprising the step of:reflecting sound in said sound cancellation chamber toward said noise cancellation center point.
- 23. A method of reducing noise in an exhaust stream, comprising the steps of:(a) splitting said exhaust stream into a first exhaust stream and a second exhaust stream that are substantially equal; (b) directing said first exhaust stream into a sound cancellation chamber on a common counter-flow centerline in a second flow direction that is opposite to said first flow direction such that said second exhaust stream meets said first exhaust stream at a noise cancellation center point on said common-flow centerline inside said sound cancellation chamber; (d) spreading said first exhaust stream and said second exhaust stream radially toward a periphery of said sound cancellation chamber; and (e) collecting and expelling exhaust from said sound cancellation chamber by: collecting said exhaust from said periphery of said sound cancellation chamber in an outlet collector ring, and directing said exhaust substantially circumferentially about said sound cancellation chamber toward an outlet aperture of said outlet collector ring.
- 24. A method of reducing noise in an exhaust stream, comprising the steps of:(a) splitting said exhaust stream into a first exhaust stream and a second exhaust stream that are substantially equal; (b) directing said first exhaust stream into a sound cancellation chamber on a common counter-flow centerline in a first flow direction; (c) directing said second exhaust stream into said sound cancellation chamber on said common counter-flow centerline in a second flow direction that is opposite to said first flow direction such that said second exhaust stream meets said first exhaust stream at a noise cancellation center point on said common-flow centerline inside said sound cancellation chamber; (d) reflecting sound in said sound cancellation chamber toward said noise cancellation center point, (e) spreading said first exhaust stream and said second exhaust stream radially toward a periphery of said first sound cancellation chamber, (f) collecting said exhaust from said periphery of said first sound cancellation chamber in an outlet collector ring, and (g) directing said exhaust substantially circumferentially about said sound cancellation chamber toward an outlet aperture of said outlet collector ring.
- 25. A method of reducing noise in an exhaust stream, comprising the steps of:directing said exhaust stream into an inlet aperture of and into a sound cancellation chamber on a generally axial flowline in a first flow direction; reflecting sound in said sound cancellation chamber off a parabolic surface toward a focal point adjacent to said inlet aperture of said sound cancellation chamber; spreading said exhaust stream radially toward a periphery of said sound cancellation chamber; collecting exhaust from said periphery of said sound cancellation chamber in an outlet collector ring; and directing said exhaust collected from said periphery of said sound cancellation chamber substantially circumferentially about said sound cancellation chamber toward an outlet aperture of said outlet collector ring.
- 26. A method of reducing noise in an exhaust stream, comprising the steps of:(a) splitting said exhaust stream into a first exhaust stream and a second exhaust stream that are substantially equal; (b) directing said first exhaust stream into a sound cancellation chamber on a common counter-flow centerline in a first flow direction; (c) directing said second exhaust stream into said sound cancellation chamber on said common counter-flow centerline in a second flow direction that is opposite to said first flow direction such that said second exhaust stream meets said first exhaust stream at a noise cancellation center point on said common-flow centerline inside said first sound cancellation chamber; (d) collecting said exhaust from said sound cancellation chamber in an outlet collector ring disposed peripherally the first sound cancellation chamber; and (e) directing said exhaust collected in the outlet collector ring in a single, substantially circular path within the outlet ring toward an outlet aperture of said outlet collector ring.
PRIORITY CLAIM
This application claims benefit to priority based upon Ridlen U.S. Provisional Patent Application Serial No. 60/109,010, filed on Nov. 19, 1998, for a TIME WARP MUFFLER.
US Referenced Citations (20)
Provisional Applications (1)
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Number |
Date |
Country |
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60/109010 |
Nov 1998 |
US |