Claims
- 1. A method of operation of a gas turbine engine, having a compressor, a power turbine that has turbine blades and is mounted downstream of said compressor, a compressor turbine mounted downstream of said turbine for rotation in a direction opposite to the rotation direction of said power turbine, a heated fluid source provided upstream of said power turbine, a fuel source connected to said heated fluid source, said method comprising:
a) preparing heated fluid in said heated fluid source by burning said fuel with combustion air to obtain heated fluid and feeding said heated fluid to said power turbine and to said compressor turbine, whereby a waste fluid flow is obtained downstream of said compressor turbine, said waste fluid flow having a temperature; b) cooling said waste fluid flow to obtain a primary cooled waste fluid flow; c) additionally cooling said primary cooled waste fluid flow to obtain a secondary cooled waste fluid flow; d) compressing said secondary waste fluid flow in said compressor to obtain a compressed waste fluid flow; e) feeding said compressed waste fluid flow for cooling said waste fluid flow that is obtained downstream of said compressor turbine to obtain a heated fluid flow; f) dividing said flow of said heated waste fluid into at least two partial flows of heated waste fluid; g) feeding one of said at least two partial flows of heated waste fluid to said power turbine blades for expanding and heating one of said at least two partial flows of heated waste fluid; h) cooling a remaining one of said at least two partial flows of heated waste fluid to obtain a cooled flow of waste fluid, boosting the pressure of said cooled flow of waste fluid to obtain a boosted flow of waste fluid, and venting said boosted waste fluid flow into the atmosphere; i) heating said combustion air to obtain a flow of heated combustion air and feeding said flow of heated combustion air to said heated fluid source; j) controlling said temperature of said waste fluid flow; k) controlling said boosted waste fluid flow; l) controlling said flow of said heated combustion air;
- 2. The method of claim 1, said method further comprising expanding said flow of heated combustion air in an expanding turbine to perform work and using said work for said boosting of said remaining one of said at least two partial flows of said cooled waste fluid flow.
- 3. A method of operation of a gas turbine engine, having a compressor, a power turbine that has turbine blades and is mounted downstream of said compressor, a compressor turbine mounted downstream of said power turbine for rotation in a direction opposite to the rotation direction of said power turbine, a heated fluid source provided upstream of said power turbine, a fuel source connected to said heated fluid source, said method comprising:
a) preparing heated fluid in said heated fluid source by combusting using said fuel and combustion air to obtain heated fluid and feeding said heated fluid to said power turbine and to said compressor turbine, whereby a waste fluid flow is obtained downstream of said compressor turbine, said waste fluid flow having a temperature; b) cooling said waste fluid flow to obtain a cooled waste fluid flow; c) additionally cooling said primary cooled fluid flow to obtain a secondary cooled waste fluid flow; d) compressing said secondary cooled waste fluid flow in said compressor to obtain a compressed waste fluid flow; e) dividing said compressed waste fluid flow into at least two partial flows of compressed waste fluid; f) feeding one of said at least two partial flows of compressed waste fluid for cooling said waste fluid flow obtained downstream of said compressor turbine to obtain a flow of heated waste fluid; g) feeding said flow of heated compressed waste fluid to said turbine blades for expanding and heating said flow of heated compressed waste fluid; h) boosting the pressure of a remaining one of said at least two partial flows of said compressed waste fluid to obtain a boosted waste fluid flow and venting said boosted waste fluid flow into atmosphere; i) heating said combustion air, expanding said combustion air after said heating, and feeding said combustion air to said heated fluid source; j) controlling said temperature of said waste fluid flow. k) controlling said boosted waste fluid flow; l) controlling said flow of heated combustion air;
- 4. The method of claim 3, said method further comprising expanding said flow of heated combustion air in an expanding turbine to perform work and using said work for said boosting of said remaining one of said at least two partial flows of compressed waste fluid.
- 5. A method of operation of a gas turbine engine, having a compressor, a power turbine that has turbine blades and is mounted downstream of said compressor, a compressor turbine mounted downstream of said power turbine for rotation in a direction opposite to the rotation direction of said power turbine, a heated fluid source provided upstream of said power turbine, a fuel source connected to said heated fluid source, said method comprising:
a) preparing heated fluid in said heated fluid source by combusting said fuel using combustion air to obtain heated fluid and feeding said heated fluid to said power turbine and to said compressor turbine, whereby a waste fluid flow is obtained downstream of said compressor turbine, said waste fluid flow having a temperature; b) cooling said waste fluid flow to obtain a primary cooled waste fluid flow; c) additionally cooling said primary cooled waste fluid flow to obtain a secondary cooled waste fluid flow; d) compressing said secondary waste fluid flow in said compressor to obtain a compressed waste fluid flow; e) feeding said compressed fluid flow for cooling said waste fluid flow that is obtained downstream of said compressor turbine to obtain a heated compressed fluid flow; f) dividing said heated compressed waste fluid flow into at least two partial flows of heated compressed waste fluid; g) feeding one of said at least two partial flows of heated waste fluid to said turbine blades for expanding and heating said one of said at least two partial flows of heated waste fluid; h) cooling a remaining one of said at least two partial flows of heated waste fluid to obtain a flow of cooled waste fluid and venting said cooled waste fluid flow to the atmosphere; i) compressing said combustion air to obtain a compressed flow of combustion air, heating said compressed flow of combustion air, and feeding said heated flow of combustion air to said heated fluid source; j) controlling said temperature of said waste fluid flow; k) controlling said cooled waste fluid flow; l) controlling said heated flow of combustion air.
- 6. The method of claim 5, said method further comprising expanding said remaining one of said at least two partial flows of heated waste fluid in an expanding turbine to perform work and using said work for compressing said combustion air.
- 7. A method of operation of a gas turbine engine, having a compressor, a power turbine that has turbine blades and is mounted downstream of said compressor, a compressor turbine mounted downstream of said power turbine for rotation in a direction opposite to the rotation direction of said power turbine, a heated fluid source provided upstream of said power turbine, a fuel source connected to said heated fluid source, said method comprising:
a) preparing heated fluid in said heated fluid source by combusting said fuel using combustion air to obtain heated fluid and feeding said heated fluid to said power turbine and to said compressor turbine, whereby a waste fluid flow is obtained downstream of said compressor turbine, said waste fluid flow having a temperature; b) cooling said waste fluid flow to obtain a primary cooled waste fluid flow; c) additionally cooling said primary cooled fluid flow to obtain a secondary cooled waste fluid flow; d) compressing said secondary cooled waste fluid flow in said compressor to obtain a compressed waste fluid flow; e) dividing said compressed waste fluid flow into at least two partial flows of compressed waste fluid; f) feeding one of said at least two partial flows of cooled compressed waste fluid for cooling said waste fluid flow obtained downstream of said compressor turbine to obtain a heated waste fluid flow; g) feeding said heated waste fluid flow to said turbine blades for expanding and heating said heated waste fluid flow; h) venting a remaining one of said at least two partial flows of compressed waste fluid to the atmosphere; i) compressing said combustion air to obtain a compressed flow of combustion air, heating said compressed flow of combustion air, and feeding said heated flow of combustion air to said heated fluid source; j) controlling said temperature of said waste fluid flow; k) controlling said remaining one of said at least two partial flows of compressed waste fluid before said removing of said at least two partial flows of compressed waste fluid into atmosphere; l) controlling said heated flow of combustion air.
- 8. The method of claim 7, said method further comprising expanding said remaining one of said at least two partial flows of heated waste fluid in an expanding turbine to perform work and using said work for compressing said combustion air.
Parent Case Info
[0001] This is a division of application Ser. No. 09/161,114, filed on Sep. 25, 1998. This application cross-references three copending U.S. patent applications, each of which was filed on Sep. 25, 1998, as U.S. patent application Ser. No. 09/161,104, 09/161,115 and 09/161,170, respectively, each of which copending U.S. applications is incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09161114 |
Sep 1998 |
US |
Child |
09925823 |
Aug 2001 |
US |