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- W4378533523 abstract "This work details the design methodology, commissioning process, and successful implementation of the SuperCritical Injector Piston (SCIPi) in the T4 free-piston shock tunnel facility at the University of Queensland. Shock tunnels and other short duration test facilities present significant challenges to the development of compatible fuel systems due to limited test section volume and the rapid firing sequence of the facility. SCIPi is an on-board fuel delivery system that makes use of a nitrogen driven piston mechanism to deliver heated, high-pressure ethylene to experiment models with an establishment time of less than 80 milliseconds. It implements a low-friction bearing and seal assembly coupled with a low-strength damper to provide smooth piston movement during the firing process. It is capable of delivering supercritical ethylene plenum states within the bounds of 300 to 342 K, and 5.0 to 15.5 MPa into models in the T4 facility. The SCIPi system has successfully completed its commissioning process and was tested in the T4 test section during an experimental campaign investigating supercritical ethylene injection into supersonic crossflow." @default.
- W4378533523 created "2023-05-28" @default.
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- W4378533523 date "2023-05-27" @default.
- W4378533523 modified "2023-10-14" @default.
- W4378533523 title "Commissioning of a Supercritical Ethylene Fuel Injection System in the T4 Hypersonic Impulse Facility." @default.
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- W4378533523 doi "https://doi.org/10.2514/6.2023-3025" @default.
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