Claims
- 1. A nozzle assembly for directing cooling airflow in a gas turbine nozzle, said nozzle assembly comprising:
an impingement insert for cooling the nozzle airfoil walls; and a metering plate, having at least one metering hole, for balancing cooling airflow within different circuits of the nozzle.
- 2. A nozzle assembly as in claim 1, said metering plate having more than one metering hole.
- 3. A nozzle assembly as in claim 1, said metering plate being designed so as to reduce static pressure variation produced by cooling airflow passing through the metering plate.
- 4. A nozzle assembly as in claim 1, said insert and metering plate being attached together prior to insertion into the nozzle.
- 5. A nozzle assembly as in claim 1, said insert being inserted into the nozzle prior to said metering plate being attached to said insert.
- 6. A nozzle assembly as in claim 4, said insert and metering plate being attached by welding.
- 7. A nozzle assembly as in claim 5, said insert and metering plate being attached by welding.
- 8. A method for directing cooling airflow within a multi cavity gas turbine nozzle, said method comprising:
inserting at least one impingement insert into at least one of the nozzle cavities; and attaching at least one metering plate to said at least one impingement insert.
- 9. A method as in claim 8, including welding said at least one metering plate to said at least one impingement insert.
- 10. A method for directing cooling airflow within a multi cavity gas turbine nozzle, said method comprising:
forming at least one assembly of an impingement insert and a metering plate; and inserting said at least one assembly into one of the cavities of the gas turbine nozzle.
- 11. A method as in claim 10, including welding together said impingement insert and said metering plate.
Government Interests
[0001] This invention was made with Government support under Contract No. DE-FC21-95ZMC31176 awarded by the Department of Energy. The Government has certain rights in this invention.