Claims
- 1. A system for regulating the flow of gas from an environment, through a region and to a lower pressure area, so as to maintain a constant differential pressure in the region with respect to the environment, the system comprising:
a path, through which gas passes from the region to the lower pressure area; a reference chamber located adjacent the path; first and second plates mounted at opposite sides of the path so that the two plates are substantially parallel to each other, the first plate having a first integral hinge so that the first plate can rotate at the first integral hinge, the second plate have a second integral hinge so that the second plate can rotate at the second integral hinge, both the first plate and the second plate having a conduit side, facing the path, and a reference-pressure side, the second plate's reference-pressure side being exposed to the environment's pressure, and the first plate's reference-pressure side being exposed to the reference chamber; a reference conduit connecting the region directly to the reference chamber so that the pressure in the reference chamber is the same as the region's pressure; and an impeder for variably impeding the flow through the path based on the position of the plates.
- 2. A system according to claim 1, wherein the impeder includes a fixed grate disposed in the path so that it does not move with respect to the path, and a movable grate, the movable grate coupled to the first plate via a third integral hinge at a point distal from the first integral hinge, the movable grate coupled to the second plate via a fourth integral hinge at a point distal from the second integral hinge, the movable grate being disposed immediately adjacent to the fixed grate, so that as the movable grate moves with respect to the fixed grate the impedance on the flow varies.
- 3. A system according to claim 2, wherein the movable grate, the first plate, and the second plate are a single component formed from a single sheet of a material.
- 4. A system according to claim 3, wherein the material is polypropene.
- 5. A system according to claim 2, wherein the fixed grate is formed from a single sheet of a material.
- 6. A system according to claim 5 wherein the material is polypropene.
- 7. A system according to claim 2, wherein the movable grate and the fixed grate, when aligned, have a shape that is substantially symmetric fore and aft relative to the path.
- 8. A system according to claim 7, wherein the shape is elliptical.
- 9. A system according to claim 1, further comprising an adjustor for urging the plates to move in a direction that adjusts the impedance on the flow.
- 10. A system according to claim 9, wherein the adjuster includes one of a spring, a weight, a DC electric motor, or a piston and cylinder arrangement.
- 11. A system according to claim 10, wherein the spring is one of a compression spring or a torsional spring.
- 12. A device for regulating fluid flow, the device comprising:
a path through which fluid flows; first and second plates mounted at opposite sides of the path so that the two plates are substantially parallel to each other, the first plate having a first integral hinge so that the first plate can rotate at the first integral hinge, the second plate have a second integral hinge so that the second plate can rotate at the second integral hinge, both the first plate and the second plate having a conduit side, facing the path, and a reference-pressure side, the first plate's reference-pressure side being exposed to a first reference pressure, and the second plate's reference-pressure side being exposed to a second reference pressure; and impedance means attached to the plates for variably impeding the flow through the path based on the position of the plates.
- 13. A system according to claim 12, wherein the impeder includes a fixed grate disposed in the path so that it does not move with respect to the path, and a movable grate, the movable grate coupled to the first plate via a third integral hinge at a point distal from the first integral hinge, the movable grate coupled to the second plate via a fourth integral hinge at a point distal from the second integral hinge, the movable grate being disposed immediately adjacent to the fixed grate, so that as the movable grate moves with respect to the fixed grate the impedance on the flow varies.
- 14. A system according to claim 13, wherein the movable grate, the first plate, and the second plate are a single component formed from a single sheet of a material.
- 15. A system according to claim 14, wherein the material is polypropene.
- 16. A system according to claim 13, wherein the fixed grate is formed from a single sheet of a material.
- 17. A system according to claim 16, wherein the material is polypropene.
- 18. A system according to claim 13, wherein the movable grate and the fixed grate, when aligned, have a shape that is substantially symmetric fore and aft relative to the path.
- 19. A system according to claim 18, wherein the shape is elliptical.
- 20. A system according to claim 12, further comprising restoring means for urging the plates to move in a direction that lessens the impendence on the flow.
- 21. A system according to claim 20, wherein the restoring means includes one of a spring, a weight, a DC electric motor, or a piston and cylinder arrangement.
- 22. A system according to claim 21, wherein the spring is one of a compression spring or a torsional spring.
- 23. A system for regulating fluid flow, the system comprising:
a path through which fluid passes; a plate having a first integral hinge so that the plate can rotate at the first hinge, the plate having a reference-pressure side, the plate's reference pressure side being exposed to a reference pressure; a fixed grate disposed in the path so that it does not move with respect to the path; and a movable grate coupled to the plate via a second integral hinge at a point distal from the first integral hinge, the movable grate being disposed immediately adjacent to the fixed gate, so that the movable and fixed grates impart an impedance to the flow through the path, and so that, as the movable grate moves with respect to the fixed grate, the impedance on the flow varies.
- 24. A system according to claim 23, wherein the movable grate and the fixed grate, when aligned, have a shape that is substantially symmetric fore and aft relative to the path.
- 25. A system according to claim 24, wherein the shape is elliptical.
- 26. A system according to claim 23, further including restoring means for applying a torque about the first integral hinge that urges the plate in a direction that lessens the impedance.
- 27. A system according to claim 26, wherein the restoring means includes one of a spring, a weight, a DC electric motor, or a piston and cylinder arrangement.
- 28. A system according to claim 27, wherein the spring is one of a compression spring or a torsional spring.
- 29. A device for regulating the flow of fluid through a passageway, the device compising:
a conduit having a wall defining the passageway through the device; a member having a top face, exposed to a reference pressure, and a bottom face forming a portion of the conduit wall, the member having a first integral hinge so that the member can rotate at the first integral hinge; and a gate, attached to the member at a point distal from the first integral hinge, the gate extending into the passageway so as to variably impede fluid flowing through the passageway at a constriction point, the gate's impedance on the fluid flow varying as a function of the pressure differential across the member's top and bottom faces, the gate and the member being mounted so that each moves in a direction transverse to the direction of the fluid through the constriction point.
- 30. A device according to claim 29, wherein the gate includes a movable grate fixedly attached to the member so that it moves with the member, and wherein the conduit includes a fixed grate fixedly attached to the conduit so that the fixed grate does not move with respect to the conduit, the fixed grate and movable grate being located adjacent each other and defining a plurality of constriction points, the size of each constriction point varying as the member moves.
- 31. A device according to claim 30, wherein the movable grate and the fixed grate, when aligned, have a shape that is substantially symmetric fore and aft relative to the passageway.
- 32. A system according to claim 31, wherein the shape is elliptical.
- 33. A system according to claim 29, further comprising restoring means for exerting a torque on the member about the first integral hinge so as to tend to cause the gate to lessen the impedance on the fluid flow, and so that when there is no fluid flow through the passageway the amount that the gate impedes the flow is relatively low, the restoring means including the weight of the member upstream of the pivot point.
- 34. A system according to claim 33, wherein the restoring means includes one of a spring, a weight, a DC electric motor, or a piston and cylinder arrangement.
- 35. A system according to claim 34, wherein the spring is one of a compression spring or a torsional spring.
- 36. A device for regulating the flow of fluid, the device comprising:
a conduit through which fluid flows; a member having a frontal face along which the entire face fluid in the conduit flows, and a distal face exposed to a reference pressure, the member having an integral hinge so that the member can rotate at the integral hinge; and impedance means for variably impeding flow through the conduit at one or more constriction points, the size of each constriction point varying as the member moves, the impedance means extending only part way into the passageway, so that a portion of the flow through the passageway bypasses the constriction point.
- 37. A device according to claim 36, wherein the impedance means includes a movable grate fixedly attached to the member so that it moves with the member, and wherein the conduit includes a fixed grate fixedly attached to the conduit so that the fixed grate does not move with respect to the conduit, the fixed grate and movable grate being located adjacent each other, and defining the one or more constriction points, the size of each constriction point varying as the member moves.
- 38. A device according to claim 37, wherein the movable grate and the fixed grate, when aligned, have a shape that is substantially symmetric fore and aft with respect to the path.
- 39. A system according to claim 38, wherein the shape is elliptical.
- 40. A system according to claim 36, further comprising restoring means for exerting a torque on the member about the hinge, so as to tend to lessen the impedance on the fluid flow, and so that when there is no flow through the conduit the impedance caused by the impedance means is relatively low.
- 41. A system according to claim 40, wherein the restoring means includes one of a spring, a weight, a DC electric motor, or a piston and cylinder arrangement.
- 42. A system according to claim 41, wherein the spring is one of a compression spring or a torsional spring.
- 43. A device for regulating fluid flow, the device comprising:
a shell formed from a single sheet of folded material, the shell forming a path through which fluid flows; a fixed grate formed from a single sheet of folded material, the fixed grate disposed in the path so that as fluid moves the fixed grate does not move; and a movable grate assembly formed from a single sheet of folded material, the movable grate assembly including a movable grate that moves with respect to the fixed grate so as to vary flow impedance.
- 44. A device according to claim 43, wherein the movable grate assembly includes at least one member that includes an integral hinge, such that the member can rotate at the integral hinge.
- 45. A device according to claim 44, wherein the integral hinge is formed by one of injection molding, hot forging, or machining of oriented material.
- 46. A device according to claim 43, wherein the movable grate assembly further includes first and second plates, the first plate having a first integral hinge so that the first plate can rotate at the first integral hinge, the second plate have a second integral hinge so that the second plate can rotate at the second integral hinge, the movable grate coupled to the first plate via a third integral hinge at a point distal from the first integral hinge, the movable grate coupled to the second plate via a fourth integral hinge at a point distal from the second integral hinge, the first and second plates mounted at opposite sides of the path such that both plates having a conduit side, facing the path, and a reference-pressure side being exposed to a first reference pressure.
- 47. A method for constructing a device for regulating fluid flow, the method comprising:
folding a first sheet of material forming a shell; folding a second sheet of material forming a fixed grate; folding a third sheet of material forming a movable grate, combining the shell, the fixed grate, and the movable grate to form the device.
- 48. A method according to claim 47, further comprising applying a sealent to seal the device.
- 49. A method according to claim 47, further comprising using a welding process to seal the device.
- 50. A method according to claim 47, further comprising using ultrasonic welding to seal seal the device.
- 51. A device according to claim 47, wherein the movable grate assembly includes at least one member that has an integral hinge, such that the member can rotate at the integral hinge.
- 52. A device for regulating the flow of gas from an environment, the device comprising:
a shell forming a path through which fluid flows; a fixed grate disposed in the path so that as fluid flows in the path the fixed grate does not move; and a movable grate assembly that includes one or more plates and a movable grate attached to the one or more plates, the one or more plates including an integral hinge such that the plate can rotate about the integral hinge, wherein when the movable grate moves with respect to the fixed grate the impedance on the flow varies.
- 53. A device according to claim 52, wherein the one or more plates are attached to the shell.
- 54. A device according to claim 52, wherein the movable grate is attached to each plate via an integral hinge.
- 55. A device according to claim 52, wherein the movable grate assembly is formed from a single sheet of folded material.
- 56. A device according to claim 52, wherein the shell is formed from a single sheet of folded material.
- 57. A device according to claim 52, wherein the fixed grate is formed from a single sheet of folded material.
- 58. A device according to claim 52, further including an adjustor for urging the plates to move in a direction that adjusts the impedance on the flow.
- 59. A device according to claim 58, wherein the adjuster includes one of a spring, a weight, a DC electric motor, or a piston cylinder arrangement.
- 60. A device according to claim 59, wherein the spring is one of a compression spring or a torsional spring.
- 61. The device according to claim 60, wherein the movable grate and the fixed grate, when aligned, have a shape that is substantially symmetric fore and aft relative to the path.
- 62. The device according to claim 61, wherein the shape is elliptical.
- 63. A device according to claim 52, wherein the movable grate assembly includes first and second plates, the first plate having a first integral hinge so that the first plate can rotate at the first integral hinge, the second plate have a second integral hinge so that the second plate can rotate at the second integral hinge, the movable grate coupled to the first plate via a third integral hinge at a point distal from the first integral hinge, the movable grate coupled to the second plate via a fourth integral hinge at a point distal from the second integral hinge, the first and second plates mounted at opposite sides of the path such that both plates having a conduit side, facing the path, and a reference-pressure side being exposed to a first reference pressure.
- 64. A device for regulating fluid flow from an environment, the device comprising:
a conduit having walls defining a path through which fluid flows; an impeder attached to the conduit, the impeder for variably impeding the flow through the path, the impeder including:
an integral hinge such that the impeder can rotate about the integral hinge; a fixed grate disposed in the path so that as fluid moves the fixed grate does not move; and a movable grate, wherein when the movable grate moves with respect to the fixed grate the impedance on the flow varies.
PRIORITY
[0001] This application claims priority from U.S. provisional application serial No. 60/246,205, filed Nov. 6, 2000, entitled “Method and Apparatus for a Flow Regulator Having an Integral Hinge” and bearing attorney docket number 955/127, the disclosure of which is incorporated herein, in its entirety, by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60246205 |
Nov 2000 |
US |