Compressor
A compressor section for a gas turbine engine, the compressor section including a circumferential row of stator vanes, a circumferential row of rotor blades, and a casing arrangement. A row of bleed ports are provided in the casing arrangement. Each of the bleed ports extends radially and is curved such that an outlet of the port is rearward of and is circumferentially offset in a direction of rotation of the rotor blades from an inlet of the port.
1. A compressor section for a gas turbine engine, the compressor section comprising:
a circumferential row of stator vanes;
a circumferential row of rotor blades;
a casing arrangement configured such that the rotor blades pass the casing arrangement during rotation in a first axial region and the stator vanes are connected to the casing arrangement in a second axial region;
a row of bleed ports provided in the casing arrangement, each of the bleed ports extending radially, each of the bleed ports being curved such that an outlet of each respective bleed port is rearward of an inlet of the respective bleed port, and the outlet of each respective bleed port is circumferentially offset in a direction of rotation of the rotor blades from the inlet of the respective bleed port; and
an exit diffuser disposed at the respective outlet of each of the bleed ports, wherein, for each respective bleed port of the bleed ports, a ratio of a width of an outlet of the exit diffuser to a width of an inlet of the exit diffuser is greater than a ratio of a width of the outlet of the respective bleed port to a width of the inlet of the respective bleed port.
2. The compressor section according to claim 1 , wherein each of the bleed ports is configured to have a larger cross section at the outlet than a cross section at the inlet.
3. The compressor section according to claim 2 , wherein the outlet is larger than the inlet in a circumferential or axial direction.
4. The compressor section according to claim 1 , wherein the bleed ports are provided axially adjacent to and forward of the row of rotor blades.
5. The compressor section according to claim 1 , wherein the casing arrangement includes a rotor casing proximal to the rotor blades and a stator casing to which the stator vanes are connected, and the bleed ports extend through both the stator casing and the rotor casing.
6. The compressor section according to claim 5 , wherein channels defining the bleed ports in the rotor casing are co-axial to channels defining the bleed ports in the stator casing.
7. The compressor section according to claim 5 , wherein:
the rotor casing includes a rotor casing portion having a flange, and the stator casing includes at least two stator casing portions each having a flange, and
the flange of the rotor casing portion is positioned between and connected to the flanges of the at least two stator casing portions.
8. The compressor section according to claim 7 , wherein the bleed ports are provided adjacent to the flange of one of the stator casing portions.
9. The compressor section according to claim 1 , wherein the casing arrangement includes a stator casing, and the exit diffuser is connected to the stator casing.
10. A gas turbine engine comprising the compressor section according to claim 1 .
11. The gas turbine engine according to claim 10 , wherein the compressor section is a high pressure compressor.
12. The compressor section according to claim 1 , wherein the bleed ports are provided axially adjacent to and rearward of the row of rotor blades.