Engine inlet ice protection system with power control by zone
A system includes a first heater located at the leading edge of a gas turbine structural member, a second heater located aft of the first heater, and a third heater located aft of the second heater. The first, second and third heaters are electrically-powered to prevent icing of the gas turbine structural member. Each of the heaters has a Watt density, and the Watt densities of the heaters differ from one another as a function of a magnitude of a cooling coefficient for airflow passing the vicinity of each heater.
1. An ice protection system for a gas turbine engine, the system comprising:
a plurality of structural members arranged in a cascade configuration, each structural member defining a leading edge and opposite sidewalls, and wherein the plurality of structural members define a plurality of zones;
at least one electrically-powered heater disposed at each of the plurality of structural members; and
an ice protection system controller for controlling operation of the electrically powered heaters, wherein the ice protection system controller is configured to selectively provide power to the electrically-powered heaters by zone according to a duty cycle.
2. The system of claim 1 , wherein a first of the plurality of structural members is symmetrically shaped and comprises:
a first electrically-powered heater embedded at the leading edge of the structural member;
a pair of second electrically-powered heaters embedded in the structural member opposite each other at locations along the sidewalls, wherein the pair of second electrically-powered heaters each have a Watt density less than a Watt density of the first electrically-powered heater; and
a pair of third electrically-powered heaters embedded in the structural member opposite each other at locations along the sidewalls rearward of the pair of second electrically-powered heaters, respectively, wherein the pair of third electrically-powered heaters each has a Watt density less than the Watt densities of each of the second pair of electrically-powered heaters,
wherein the Watt densities of the first electrically-powered heater and the second and third pairs of electrically-powered heaters are selected as a function of cooling coefficients for airflow passing the structural member during engine operation.
3. The system of claim 1 , wherein the Watt density of the first electrically-powered heater is about three times more than the Watt densities of each of the pair of second electrically-powered heaters.
4. The system of claim 1 , wherein the Watt densities of each of the pair of second electrically-powered heaters are about two times more than the Watt densities of each of the pair of third electrically-powered heaters.