Enhanced cloth seal
10161523 ยท 2018-12-25
Assignee
Inventors
- Neelesh Nandkumar Sarawate (Niskayuna, NY, US)
- David Wayne Weber (Simpsonville, SC, US)
- Omprakash Samudrala (Clifton Park, NY, US)
- Victor John Morgan (Simpsonville, SC, US)
Cpc classification
F05D2300/6012
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/57
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/0812
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16J15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The embodiments described herein provide a cloth seal for use with turbine components. The cloth seal includes first and second cloth layers. One or more central shims are positioned between the first and second cloth layers so as to block a leakage flow path. Another shim is positioned on and seals the opposite side of the first cloth layer from the one or more central shims positioned between the first and second cloth layers so as to block another leakage flow path. Yet another sealing shim may be positioned on the opposite side of the second cloth layer from the one or more central shims positioned between the first and second cloth layers to as to seal the opposite side of the second cloth layer and block another leakage flow path.
Claims
1. A cloth seal, comprising: a first cloth layer; a second cloth layer; one or more central shims positioned between the first and second cloth layers so as to block a leakage flow path through at least one of the cloth layers, wherein the one or more central shims comprise seals selected from a double bent flange seal comprising side flanges, a pair of bent flange seals comprising side flanges or at least one curved hook flange seal comprising side flanges; a second shim positioned on the opposite side of the first cloth layer from the one or more central shims, the second shim completely covering and sealing the opposite side of the first cloth layer so as to block another leakage flow path through at least one of the cloth layers, wherein the second shim extends to at least one pair of the side flanges; and a third shim positioned on the opposite side of the second cloth layer from one or more central shims, the third shim completely covering and sealing the opposite side of the second cloth layer so as to block another leakage flow path through at least one of the cloth layers, wherein the third shim extends to either the same pair of the side flanges that the second shim extends to or to another pair of the side flanges.
2. The cloth seal according to claim 1, wherein the cloth seal is disposed between adjacent turbine components.
3. A cloth seal, comprising: a first cloth layer disposed between adjacent turbine components; a second cloth layer disposed between the adjacent turbine components; one or more central shims positioned between the first and second cloth layers so as to block a leakage flow path through at least one of the cloth layers and exiting a slot common to the adjacent turbine components, wherein the one or more central shims comprise seals selected from a double bent flange seal comprising side flanges, a pair of bent flange seals comprising side flanges or at least one curved hook flange seal comprising side flanges; a second shim positioned on the opposite side of the first cloth layer from the one or more central shims, the second shim completely covering and sealing the opposite side of the first cloth layer so as to block another leakage flow path through at least one of the cloth layers and exiting the common slot, wherein the second shim extends to at least one pair of the side flanges; and a third shim positioned on the opposite side of the second cloth layer from one or more central shims, the third shim completely covering and sealing the opposite side of the second cloth layer so as to block another leakage flow path through at least one of the cloth layers, wherein the third shim extends to either the same pair of the side flanges that the second shim extends to or to another pair of the side flanges.
Description
DRAWINGS
(1) The foregoing and other features, aspects and advantages of the invention are apparent from the following detailed description taken in conjunction with the accompanying drawings in which like characters represent like parts throughout the drawings, wherein:
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(13) While the above-identified drawing figures set forth alternative embodiments, other embodiments of the present invention are also contemplated, as noted in the discussion. In all cases, this disclosure presents illustrated embodiments of the present invention by way of representation and not limitation. Numerous other modifications and embodiments can be devised by those skilled in the art which fall within the scope and spirit of the principles of this invention.
DETAILED DESCRIPTION
(14) Referring now to the drawings, in which like numerals refer to like elements throughout the several views,
(15) The gas turbine engine 10 may use natural gas, various types of syngas, and/or other types of fuels. The gas turbine engine 10 may be one of any number of different gas turbine engines. The gas turbine engine 10 may have other configurations and may use other types of components. Other types of gas turbine engines also may be used herein. Multiple gas turbine engines 10, other types of turbines, and other types of power generation equipment also may be used herein together. Other types of rotary machines also may be used herein.
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(19) In this embodiment, the cloth seal 100 also may include a second/top shim/seal 102 that may extend substantially along the length and width of the upper cloth layer 60. Second shim 102 may extend to the side flange 75 to form a seal between cloth layer 60 and the side flange 75. The cloth seal 100 also may include a third/bottom shim/seal 104 that may extend substantially along the length and width of the bottom cloth layer 65. Third shim 104 may extend to the side flange 75 to form a seal between the cloth layer 65 and the side flange 75. The second/top shim/seal 102 largely covers the upper cloth layer 60. The third/lower shim/seal 104 largely covers the lower cloth layer 65. Since leakage flow can exit through the segment gap 93 depicted in
(20) The central cloth seal shim 70 will also act as a sealing surface if shims 102, 104 wear out or deteriorate. Although the addition of shims 102, 104 may require further compression and stiffening of the cloth layers 60, 65, any gain achieved by blocking the cloth-side leakage is anticipated to be significantly higher than any performance degradation that may occur due to a stiffer seal.
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(23) In this embodiment, the cloth seal 140 also includes a second/top shim/seal 102 that may extend substantially along the length and width of the upper cloth layer 60. The cloth seal 140 also may include a third/bottom shim/seal 104 that may extend substantially along the length and width of the bottom cloth layer 65. The top shim/seal 102 largely covers the upper cloth layer 60. The lower shim/seal 104 largely covers the lower cloth layer 65. At least one of the shims 102, 104 may extend to the side flanges 124 that may comprise, without limitation, one or more bent flanges or double bent flanges. The top and bottom shims 102, 104 cover all the exit area to the leakage flow from the sides of the cloth layers 60, 65. The top and bottom shims 102, 104 thus prevent some of the through leakage as well as provide a better sealing surface during radial and skew surface offsets.
(24) In summary explanation, a cloth seal for use with turbine components may include a number of cloth layers, a central shim positioned between the cloth layers, and an end seal positioned at an end of the cloth layers so as to block a leakage flow path through at least one of the cloth layers. The cloth seal may further include a top side face shim, a bottom side face shim, or both so as to block another leakage flow path through at least one of the cloth layers. The top face and bottom face shims provide a physical barrier to substantially prevent leakage flow exiting through the segment gap portion of turbine shrouds, nozzles, or any type of adjacent components and also provide improved surface sealing during radial and skew offsets.
(25) It should be apparent that the foregoing relates only to certain embodiments of the present application and that numerous changes and modifications may be made herein by one of ordinary skill in the art without departing from the general spirit and scope of the invention as defined by the following claims and the equivalents thereof.