EP2497907A2

System for cooling and purging exhaust section of gas turbine engine

Abstract

A system is provided with a turbine exhaust strut (40) configured to provide a bidirectional airflow. The turbine exhaust strut includes a first portion (50) having a first flow passage (52) configured to flow a fluid in a first direction between inner and outer exhaust walls of a turbine exhaust section, and a second portion (48) having a second flow passage (53) configured to flow the fluid in a second direction between the inner and outer exhaust walls of the turbine exhaust section. Furthermore, the first and second directions are opposite from one another.

EP2497907A2, drawing sheet 1
Sheet 1 of 7

Term

5.4 yearsto projected expiry

Projected expiry 5 March 2032, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

15 claims: 8 independent, 7 dependent

  1. 1
    A system, comprising:a turbine exhaust strut (40) configured to provide a bi-directional airflow, wherein the turbine exhaust strut comprises: a first portion (50) having a first flow passage (52) configured to flow a fluid in a first direction between inner and outer exhaust walls (80,106) of a turbine exhaust section (24);and a second portion (48) having a second flow passage (53) configured to flow the fluid in a second direction between the inner and outer exhaust walls (80,106) of the turbine exhaust section, wherein the first and second directions are opposite from one another.
  2. 5
    The system of any one of claims 2 to 4, wherein the inner body (172) comprises a third flow passage (178) separated from the first flow passage (176), and the third flow passage is configured to flow the fluid in the first direction or the second direction.
  3. 6
    The system of any one of claims 2 to 4, wherein the outer body comprises a fourth flow passage separated from the second flow passage, and the fourth flow passage is configured to flow the fluid in the first direction or the second direction.
  4. 7
    The system of any one of claims 2 to 6, wherein the inner body (50) comprises a load bearing structural support, and the outer body (48) is non-load bearing.
  5. 8
    The system of any preceding claim, wherein the first flow passage (52) is configured to flow the fluid into a first cavity (82) between the inner exhaust wall (80) and the rotation axis, and the second flow passage (53) is configured to flow the fluid from the first cavity to a second cavity (110) between the outer exhaust wall (106) and an outer casing (108) of the turbine exhaust section.
  6. 13
    The system of any preceding claim, comprising a single blower configured to circulate the fluid through the first and second flow passages.
  7. 14
    A system, comprising:a turbine exhaust section (24), comprising: an exhaust flow path (56);an outer structure comprising an outer exhaust wall (106) disposed along the exhaust flow path;an inner structure comprising an inner exhaust wall (80) disposed along the exhaust flow path, and an inner cavity (82) disposed between the inner exhaust wall and a rotational axis of a turbine;a bearing assembly (84) disposed in the inner cavity (82);a lubrication passage (86) disposed in the inner cavity;and a strut (40) extending between the outer structure and the inner structure, wherein the strut comprises a first flow passage (52) configured to flow a fluid through the inner cavity.
  8. 15
    A system, comprising:a turbine section (22), and an exhaust section (24) coupled to the turbine section, comprising: an exhaust flow path (56);an outer structure comprising an outer exhaust wall (106) disposed along the exhaust flow path, an outer casing (108), and an outer cavity (110) disposed between the outer exhaust wall and the outer casing;an inner structure comprising an inner exhaust wall (80) disposed along the exhaust flow path, and an inner cavity (82) disposed between the inner exhaust wall and a rotational axis of a turbine;a first flow passage (52) configured to flow a fluid through the inner cavity (82);and a second flow passage (53) configured to flow the fluid from the inner cavity (82) to the outer cavity (110).