Cooling for double-wall structures
First Claim
1. A turbine engine having a coolable double wall structure for use and exposure in a hot gas flow environment, said coolable double wall structure comprising:
- a jet issuing wall;
a target wall spaced apart from said jet issuing wall defining a cavity therebetween;
a plurality of longitudinally extending impingement rails disposed on said jet issuing wall such that a bottom portion of each respective impingement rail is adjacent said target wall; and
a plurality of impingement ports having an entry area, an exit area and a length to diameter ratio in the range between about 3;
1 to about 10;
1, said impingement ports disposed within each respective impingement rail to provide flow communication through said jet issuing wall to said target wall.
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Accused Products
Abstract
A coolable double walled structure, for use and exposure in a hot gas flow environment, includes a jet issuing wall, a target wall spaced from the jet issuing wall defining at least one cavity therebetween. The jet issuing wall includes at least one impingement rail having a greater thickness than the jet issuing wall such that a bottom portion of the impingement rail extends within the cavity formed between the jet issuing wall and the target wall. A number of impingement ports are disposed within each impingement rail to provide flow communication through the jet issuing wall to the target wall. Due to the relatively thick dimensions of the impingement rail, the impingement ports disposed within respective impingement rails can be directionalized so as to provide for local cooling needs. In one embodiment, the entry areas of the impingement ports are bell shaped so as to lower inlet pressure loss. In another embodiment, the exit area immediately surrounding the impingement ports is rounded for lower post-impingement pressure drop.
149 Citations
1 Claim
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1. A turbine engine having a coolable double wall structure for use and exposure in a hot gas flow environment, said coolable double wall structure comprising:
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a jet issuing wall; a target wall spaced apart from said jet issuing wall defining a cavity therebetween; a plurality of longitudinally extending impingement rails disposed on said jet issuing wall such that a bottom portion of each respective impingement rail is adjacent said target wall; and a plurality of impingement ports having an entry area, an exit area and a length to diameter ratio in the range between about 3;
1 to about 10;
1, said impingement ports disposed within each respective impingement rail to provide flow communication through said jet issuing wall to said target wall.
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Specification