Abstract
A new shock tube has been constructed for investigations of high-temperature chemical kinetics with an emphasis on combustion chemistry. This instrument includes a diaphragmless driver and electrical control of valving. A diaphragmless design significantly improves repeatability of experimental conditions vs the use of diaphragms and leads to an approximate order of magnitude reduction in turnaround time between experiments. Electrical control of valves, combined with diaphragmless operation, also enables remote and automated operation of the shock tube. The design allows for both incident and reflected shock experiments with multiple diagnostics. The performance of the shock tube is demonstrated by reproducing previous literature measurements on the unimolecular decomposition of isobutyl nitrite and cyclohexene.
Cite
CITATION STYLE
Fuller, M. E., Skowron, M., Tranter, R. S., & Goldsmith, C. F. (2019). A modular, multi-diagnostic, automated shock tube for gas-phase chemistry. Review of Scientific Instruments, 90(6). https://doi.org/10.1063/1.5095077
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