Nova Patents
EP0940562A2

Gas turbine

Abstract

Provided is gas turbine having cooling structure disposed on outside peripheral side in radius direction of movable vane in which cooling efficiency is further improved and sealing structure disposed on inside peripheral side in which leakage of sealing air is suppressed to prevent invasion of combustion gas into turbine disc and enlargement of sealing air clearance is prevented. Outside in radius direction, gap between ring segment 90 and impingement cooling plate 92 disposed on outside periphery thereof is divided in the axial direction by pressure partition plate 97 extending in circumferential direction so as to provide plural cavities adjusted to different pressures, thereby constructing cooling structure in the ring segment 90. Inside in radius direction, static vane inside diameter side cavity 53 and downstream cavity 31 are formed by box 57 for sealing the static vane inside diameter side cavity 53. Further, ring-like holding ring 38 holding sealing piece 9 for regulating clearance 6 communicating from the upstream cavity 31 to the downstream cavity 32 is provided.

EP0940562A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 2 March 2019, 7.6 years ago.

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

5 claims: 3 independent, 2 dependent

  1. 1
    Gas turbine characterized in that an outside periphery of a ring segment 90 for forming a casing in which a high temperature combustion main stream gas 15 passes is surrounded by an impingement cooling plate 92 so as to form a ring segment cavity 96 therebetween, a static vane inside diameter side cavity 53 is formed by a box 57 provided on an inside periphery of a static vane 3 disposed between a movable vane 2 and an adjacent movable vane 2 thereof operated by the main stream gas 15 in the casing, sealing air introduced into said static vane inside diameter side cavity 53 is fed to another cavity formed in a gap between the movable vane 2 and the static vane 3 so that a pressure therein is kept higher than a pressure in a gas path, said ring segment cavity 96 is divided in the axial direction by a pressure partition plate 97 extending in the circumferential direction between said ring segment 90 and said impingement cooling plate 92 of outside periphery thereof so as to provide plural cavities in which an internal pressure of an upstream cavity 96a is kept higher than an internal pressure of a downstream cavity 96b.
  2. 3
    Gas turbine characterized in that an outside periphery of a ring segment 90 for forming a casing in which a high temperature combustion main stream gas 15 passes is surrounded by an impingement cooling plate 92 so as to form a ring segment cavity 96 therebetween, a static vane inside diameter side cavity 53 is formed by a box 57 provided on an inside periphery of a static vane 3 disposed between a movable vane 2 and an adjacent movable vane 2 thereof operated by the main stream gas 15 in the casing, sealing air introduced into said static vane inside diameter side cavity 53 is fed to another cavity formed in a gap between the movable vane 2 and the static vane 3 so that a pressure therein is kept higher than a pressure in a gas path, said another cavity includes an upstream cavity 31 of which wall face is formed by a movable vane disc 4 existing in front of the static vane 3 and a downstream cavity 32 of which wall face is formed by another movable vane disc 5 existing in the back of the static vane 3 where a pressure is lower than in said upstream cavity 31, and the sealing air is supplied from said static vane inside diameter side cavity 53 to said upstream cavity 31 and said downstream cavity 32 so that the pressures in said upstream cavity 31 and said downstream cavity 32 are raised higher relative to the pressure in the gas path thereby preventing an invasion of the combustion gas 15 into the discs 4, 5.
  3. 4
    Gas turbine characterized in that an outside periphery of a ring segment 90 for forming a casing in which a high temperature combustion main stream gas 15 passes is surrounded by an impingement cooling plate 92 so as to form a ring segment cavity 96 therebetween, a static vane inside diameter side cavity 53 is formed by a box 57 provided on an inside periphery of a static vane 3 disposed between a movable vane 2 and an adjacent movable vane 2 thereof operated by the main stream gas 15 in the casing, sealing air introduced into said static vane inside diameter side cavity 53 is fed to another cavity formed in a gap between the movable vane 2 and the static vane 3 so that a pressure therein is kept higher than a pressure in a gas path, said ring segment cavity 96 is divided in the axial direction by a pressure partition plate 97 extending in the circumferential direction between said ring segment 90 and said impingement cooling plate 92 of outside periphery thereof so as to provide plural cavities each of which is adjusted to a different pressure thereby constructing a cooling structure for said ring segment 90, said another cavity includes an upstream cavity 31 of which wall face is formed by a movable vane disc 4 existing in front of the static vane 3 and a downstream cavity 32 of which wall face is formed by another movable vane disc 5 existing in the back of the static vane 3 where a pressure is lower than in said upstream cavity 31, and the sealing air is supplied from said static vane inside diameter side cavity 53 to said upstream cavity 31 and said downstream cavity 32 so that the pressures in said upstream cavity 31 and said downstream cavity 32 are raised higher relative to the pressure in the gas path thereby preventing an invasion of the combustion gas 15 into the discs 4, 5.