Nova Patents
EP2554792A1

Double-jet film cooling structure

Abstract

Provided is a film cooling structure capable of suppressing a cooling medium film from being separated from a wall surface, to increase a film efficiency on the wall surface and thereby cool the wall surface effectively. One or more pairs of injection holes (5a, 5b) are formed on a wall surface (1) facing a passage (2) of high-temperature gas (G) to inject a cooling medium (C) to the passage (2). A single supply passage (7) is formed inside the wall to supply the cooling medium (C) to each pair of injection holes (5a, 5b). A separating section (9) is provided between the injection holes (5a, 5b) forming the each pair in a location forward relative to rear ends (5aa, 5ba) of the injection holes to separate the cooling medium (C) supplied from the supply passage (7) into components flowing to the injection holes forming the each pair, respectively. An injection direction of the cooling medium (C) is set to be inclined with respect to a flow direction of the high-temperature gas (G) so that the components of the cooling medium (C)injected from the injection holes forming the each pair form swirl flows (S1, S2) oriented in directions to push the components of the cooling medium (C) against the wall surface.

EP2554792A1, drawing sheet 1
Sheet 1 of 11

Term

4.4 yearsto projected expiry

Projected expiry 2 March 2031, counted from filing; an application has no term until it is granted.

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

8 claims: 1 independent, 7 dependent

  1. 1
    A double-jet type film cooling structure comprising:one or more pairs of injection holes which are provided on a wall surface facing a high-temperature gas passage and inject a cooling medium to the passage;a single supply passage provided inside a wall to supply the cooling medium to the each pair of injection holes;and a separating section provided between the injection holes forming the each pair in a location forward relative to rear ends of the injection holes to separate the cooling medium supplied from the supply passage into components flowing to the injection holes forming the each pair, respectively;wherein an injection direction of the cooling medium is set to be inclined with respect to a flow direction of the high-temperature gas so that the components of the cooling medium injected from the injection holes forming the each pair form swirl flows oriented in directions to push the components of the cooling medium against the wall surface.
  2. 2
    The double-jet type film cooling structure according to Claim 1, wherein the separating section is inclined in a rearward direction around an axis orthogonal to a direction in which the cooling medium colliding against the separating section travels, with respect to a virtual orthogonal plane orthogonal to the direction in which the cooling medium travels.
  3. 3
    The double-jet type film cooling structure according to Claim 1 or 2, wherein horizontal injection angles formed between injection directions of the components of the cooling medium injected from the injection holes forming the each pair, the injection directions being along the wall surface, and the flow direction of the high-temperature gas, are set to angles of θ1 which are oriented in opposite directions with respect to the flow direction of the high-temperature gas.
  4. 4
    The double-jet type film cooling structure according to any one of Claims 1 to 3, wherein each of the horizontal injection angles θ1 is in a range of 5 to 85 degrees.
  5. 5
    The double-jet type film cooling structure according to any one of Claims 1 to 4, wherein a vertical injection angle θ2 which is formed between the wall surface and the injection direction of the component of the cooling medium injected from each of the injection holes to the high-temperature gas passage is in a range of 5 to 85 degrees.
  6. 6
    The double-jet type film cooling structure according to any one of Claims 1 to 5, wherein the injection holes forming each pair in an opening facing the wall surface, except for the separating section, have substantially oval shapes having long axes along the injection directions, respectively;and a distance between centers of the oval shapes is set to 0 to 2D when a hole diameter of the supply passage is D.
  7. 7
    The double-jet type film cooling structure according to any one of Claims 1 to 6, wherein a length L1 of the supply passage is set to 0 to 10D when a hole diameter of the supply passage is D.
  8. 8
    The double-jet type film cooling structure according to any one of Claims 1 to 7, wherein a distance L2 from an exit of the supply passage to the opening of the pair of injection holes, the opening facing the wall surface, is set to 0.5D to 6D when a hole diameter of the supply passage is D.