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- W2186976074 abstract "Experimental investigations haveindicated thatelectrode vaporcanhaveasignificant negative effect inthermal interruption speed forthegas-blast circuit breakers. Thiselectrode vaporcontam- ination canbeminimized bytheuseofasymmetric dual-flow nozzle configuration. Acomputer program wasdeveloped todesign thenozzle andelectrode geometries oftheasymmetric dual-flow interrupter and tocalculate boththesubsonic andsupersonic coldflow fields. TheVari- ational Principle ofthefinite element method, together withaNewton- Raphson iterative scheme, wasusedtosolve thecontinuity equation forcompressible flow. Thesupersonic flowfield intheconical nozzle wascalculated bytheone-dimensional flowrelationship. Twoasym- metric dual-flow nozzle models wereconstructed toinvestigate theef- fects oforifice opening andnozzle divergent angle. Thecoldflowex- periments wereconducted intheRensselaer Polytechnic Institute (RPI) Transonic andSupersonic WindTunnelLaboratory. Various up- stream-to-downstream nozzle pressure ratios wereusedtoobtain the subsonic andsupersonic experimental flow-field data. Theexperimen- talflowmeasurements werecorrelated withthecalculated values to validate thecomputer program." @default.
- W2186976074 created "2016-06-24" @default.
- W2186976074 creator A5031606486 @default.
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- W2186976074 date "1986-01-01" @default.
- W2186976074 modified "2023-09-24" @default.
- W2186976074 title "Theoretical and Expernmental Investigations of the Flow FieldforAsymmetricDual-Flow Interrupter Nozzles" @default.
- W2186976074 cites W1667584244 @default.
- W2186976074 hasPublicationYear "1986" @default.
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