Claims
- 1. A pulse combustion energy system comprising:
- a pulse combustor having a combustion chamber and a generally tubular outlet in fluid communication with the combustion chamber for emitting high temperature pulses;
- a processing tube for flowing a material to be processed therethrough, including:
- a generally vertical section having an upper portion and a lower portion, the lower portion being in fluid communication with the outlet of the pulse combustor for receiving the high temperature pulses emitted therefrom; and
- a generally horizontal section having an upstream segment and a downstream segment, the upstream segment being in fluid communication with the upper portion of the vertical section;
- means for introducing a foreign material to be processed by the high temperature pulses into the high temperature pulses so that the foreign material flows through the vertical section of the processing tube;
- first receiving means, in fluid communication with the downstream segment of the horizontal section of the processing tube, for receiving the introduced material to be processed that flows through the horizontal section;
- second receiving means, in fluid communication with the lower portion of the vertical section of the processing tube, for receiving the introduced material to be processed that flows through the vertical section;
- wherein the material introducing means includes means for introducing the material to be processed into the high temperature pulses flowing through the upper portion of the vertical section of the processing tube;
- wherein the introduced material that flows through the vertical section of the processing tube flows from the upper portion to the lower portion of the vertical section and through the high temperature pulses emitted from the pulse combustor; and
- means for flowing a separate fluid into the lower portion of the vertical section of the processing tube.
- 2. A pulse combustion energy system as in claim 1 further comprising:
- means for detecting a prescribed differential pressure through the processing tube; and
- means, responsive to the pressure detecting means for modulating the flow of fluid into the lower portion of the vertical section of the processing tube.
- 3. A pulse combustion energy system as in claim 1 wherein the fluid flowing means comprises:
- a conduit in fluid communication with the first receiving means and extending proximate to the lower portion of the vertical section of the processing tube, and wherein the processing tube has an aperture for directing the fluid from the conduit into the processing tube.
- 4. A pulse combustion energy system as in claim 1 wherein the first receiving means comprises a first cyclone collector having an inlet and an outlet, the inlet being in fluid communication with the downstream segment of the horizontal section of the processing tube.
- 5. A pulse combustion energy system as in claim 4 wherein the fluid flowing means further comprises a conduit in fluid communication with the outlet of the first cyclone collector for receiving vapor flowing therefrom, the conduit extending to the lower portion of the vertical section of the processing tube, and wherein the processing tube has an aperture proximate the lower portion of the vertical section in fluid communication with the conduit for directing the vapor into the processing tube.
- 6. A pulse combustion energy system comprising:
- a pulse combustor having a combustion chamber and a generally tubular outlet in fluid communication with the combustion chamber for emitting high temperature pulses;
- a processing tube for flowing a material to be processed therethrough, including:
- a generally vertical section having an upper portion and a lower portion, the lower portion being in fluid communication with the outlet of the pulse combustor for receiving the high temperature pulses emitted therefrom; and
- a generally horizontal section having an upstream segment and a downstream segment, the upstream segment being in fluid communication with the upper portion of the vertical section;
- means for introducing a foreign material to be processed by the high temperature pulses into the high temperature pulses so that the foreign material flows through the vertical section of the processing tube;
- first receiving means, in fluid communication with the downstream segment of the horizontal section of the processing tube, for receiving the introduced material to be processed that flows through the horizontal section;
- second receiving means, in fluid communication with the lower portion of the vertical section of the processing tube, for receiving the introduced material to be processed that flows through the vertical section;
- wherein the material introducing means includes means for introducing the material to be processed into the high temperature pulses flowing through the upper portion of the vertical section of the processing tube;
- wherein the introduced material that flows through the vertical section of the processing tube flows from the upper portion to the lower portion of the vertical section and through the high temperature pulses emitted from the pulse combustor;
- pulse modulating means for selectively modulating the emission of pulses from the pulse combustor, the pulse modulating means comprising:
- means for detecting a prescribed temperature in the first receiving means; and
- means responsive to the temperature detecting means for selectively modulating the emission of pulses from the pulse combustor.
- 7. A pulse combustion energy system as in claim 6 wherein the pulse modulating means comprises means for modulating the flow of fuel into the pulse combustor.
- 8. The pulse combustion energy system according to claim 7 wherein the fuel flow modulating means comprises means for selectively setting a fuel valve to one of a plurality of positions between a fully opened and fully closed position.
- 9. A pulse combustion energy system as in claim 6 wherein the pulse modulating means comprises:
- means for detecting a prescribed frequency of high temperature pulses; and
- means responsive to the frequency detecting means for modulating the emission of pulses from the pulse combustor.
- 10. A pulse combustion energy system in claim 6 wherein the pulse modulating means further comprises means for modulating the flow of oxidizer into the pulse combustor.
- 11. A pulse combustion energy system comprising:
- a pulse combustor having a combustion chamber and a generally tubular outlet in fluid communication with the combustion chamber for emitting high temperature pulses;
- a processing tube for flowing a material to be processed therethrough, including:
- a generally vertical section having an upper portion and a lower portion, the lower portion being in fluid communication with the outlet of the pulse combustor for receiving the high temperature pulses emitted therefrom; and
- a generally horizontal section having an upstream segment and a downstream segment, the upstream segment being in fluid communication with the upper portion of the vertical section;
- means for introducing a foreign material to be processed by the high temperature pulses into the high temperature pulses so that the foreign material flows through the vertical section of the processing tube;
- first receiving means, in fluid communication with the downstream segment of the horizontal section of the processing tube, for receiving the introduced material to be processed that flows through the horizontal section;
- second receiving means, in fluid communication with the lower portion of the vertical section of the processing tube, for receiving the introduced material to be processed that flows through the vertical section;
- wherein the material introducing means includes means for introducing the material to be processed into the high temperature pulses flowing through the upper portion of the vertical section of the processing tube;
- wherein the introduced material that flows through the vertical section of the processing tube flows from the upper portion to the lower portion of the vertical section and through the high temperature pulses emitted from the pulse combustor;
- flow modulating means for modulating the flow into the processing tube of foreign material to be processed, the flow modulating means comprising:
- means for detecting a prescribed temperature in the first receiving means; and
- means responsive to the temperature detecting means for modulating the flow into the processing tube of foreign material to be processed.
- 12. A pulse combustion energy system as in claim 11 wherein the prescribed temperature is greater than or equal to 212.degree. F.
- 13. A pulse combustion energy system comprising:
- a pulse combustor having a combustion chamber and a generally tubular outlet in fluid communication with the combustion chamber for emitting high temperature pulses;
- a processing tube for flowing a material to be processed therethrough, including:
- a generally vertical section having an upper portion and a lower portion, the lower portion being in fluid communication with the outlet of the pulse combustor for receiving the high temperature pulses emitted therefrom; and
- a generally horizontal section having an upstream segment and a downstream segment, the upstream segment being in fluid communication with the upper portion of the vertical section;
- means for introducing a foreign material to be processed by the high temperature pulses into the high temperature pulses so that the foreign material flows through the vertical section of the processing tube;
- first receiving means, in fluid communication with the downstream segment of the horizontal section of the processing tube, for receiving the introduced material to be processed that flows through the horizontal section;
- second receiving means, in fluid communication with the lower portion of the vertical section of the processing tube, for receiving the introduced material to be processed that flows through the vertical section;
- wherein the material introducing means includes means for introducing the material to be processed into the high temperature pulses flowing through the upper portion of the vertical section of the processing tube;
- wherein the introduced material that flows through the vertical section of the processing tube flows from the upper portion to the lower portion of the vertical section and through the high temperature pulses emitted from the pulse combustor;
- flow modulating means for modulating the flow rate through the processing tube of foreign material to be processed therein, the flow rate modulating means comprising:
- means for detecting a prescribed pressure in the first receiving means; and
- a fan in fluid communication with the processing tube for selectively drawing vapor from the processing tube in response to the pressure detecting means.
- 14. A pulse combustion energy system as in claim 13 wherein the flow rate modulating means further comprises a conduit in fluid communication with the receiving means for receiving vapor flowing therefrom, the conduit extending proximate to the upstream end of the processing tube, and wherein the processing tube has an aperture for directing the vapor from the conduit into the processing tube.
- 15. A pulse combustion energy system as in claim 14 wherein the flow rate modulating means further comprises:
- means for detecting a prescribed differential pressure through the processing tube; and
- means, responsive to the pressure detecting means, for modulating the flow of vapor from the conduit into the upstream end of the processing tube.
- 16. A pulse combustion energy system comprising:
- a pulse combustor having a combustion chamber and a generally tubular outlet in fluid communication with the combustion chamber for emitting high temperature pulses;
- a processing tube for flowing a material to be processed therethrough, including:
- a generally vertical section having an upper portion and a lower portion, the lower portion being in fluid communication with the outlet of the pulse combustor for receiving the high temperature pulses emitted therefrom; and
- a generally horizontal section having an upstream segment and a downstream segment, the upstream segment being in fluid communication with the upper portion of the vertical section;
- means for introducing a foreign material to be processed by the high temperature pulses into the high temperature pulses so that the foreign material flows through the vertical section of the processing tube;
- first receiving means, in fluid communication with the downstream segment of the horizontal section of the processing tube, for receiving the introduced material to be processed that flows through the horizontal section;
- second receiving means, in fluid communication with the lower portion of the vertical section of the processing tube, for receiving the introduced material to be processed that flows through the vertical section;
- wherein the material introducing means includes means for introducing the material to be processed into the high temperature pulses flowing through the upper portion of the vertical section of the processing tube;
- wherein the introduced material that flows through the vertical section of the processing tube flows from the upper portion to the lower portion of the vertical section and through the high temperature pulses emitted from the pulse combustor; wherein the pulse combustor further comprises:
- an elongated combustion tube having an upstream end and a downstream end; and
- an oxidizer intake valve at the upstream end in fluid communication with the tube for supplying the oxidizer to the tube in the form of discrete oxidizer pulses, the valve including first and second coaxially mounted valve members in close proximity and adapted to rotate relative to each other, each member having an aperture for the flow of oxidizer therethrough and which are arranged so the apertures move into and out of registration during relative rotation of the members.
- 17. A pulse combustion energy system as in claim 16 further comprising means for modulating the emission of pulses from the pulse combustor.
- 18. A pulse combustion energy system as in claim 17 wherein the pulse modulating means comprises means for modulating the flow of oxidizer into the pulse combustor.
- 19. A pulse combustion energy system as in claim 18 wherein the oxidizer flow modulating means includes means for selectively varying the relative rotational speed of the valve members.
- 20. A pulse combustion energy system as in claim 19 wherein the pulse modulating means further comprises means for detecting a prescribed frequency of pulses emitted from the combustion tube, and wherein the oxidizer flow modulating means varies the relative rotational speed of the valve members in response to the frequency detecting means.
Parent Case Info
This is a division of application Ser. No. 07/041,794 filed Apr. 23, 1987 now U.S. Pat. No. 4,838,784 which is a division of application Ser. No. 852,854, filed Apr. 16, 1986 now U.S. Pat. No. 4,708,159.
US Referenced Citations (21)
Foreign Referenced Citations (3)
Number |
Date |
Country |
1109822 |
Jul 1957 |
DEX |
1110800 |
Jul 1957 |
DEX |
238677 |
Aug 1985 |
JPX |
Non-Patent Literature Citations (1)
Entry |
Abbott A. Putnam, "A Review of Pulse-Combustor Technology", May, 1980. |
Divisions (2)
|
Number |
Date |
Country |
Parent |
41794 |
Apr 1987 |
|
Parent |
852854 |
Apr 1986 |
|