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Numerical Study of Hydrogen Peroxide Thermal Decomposition in a Shock Tube
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作者 muhammad Rizwan Bhatti Nadeem Ahmed Sheikh +2 位作者 Shehryar Manzoor muhammad mahabat khan Muzaffar Ali 《Journal of Thermal Science》 SCIE EI CAS CSCD 2017年第3期235-244,共10页
Hydrogen peroxide(H_2O_2) has its significance during the combustion of heavy hydrocarbons in the internal combustion(IC) engines. Owing to its importance the measurements of H_2O_2 dissociation rate have been reporte... Hydrogen peroxide(H_2O_2) has its significance during the combustion of heavy hydrocarbons in the internal combustion(IC) engines. Owing to its importance the measurements of H_2O_2 dissociation rate have been reported mostly using the shock tube apparatus. These types of experimental measurements are although quite reliable but require high cost. On the other hand, numerical simulations provide low cost and reliable solutions especially using computation fluid dynamics(CFD) software. In the current study an experimental shock tube flow is modeled using open access platform OpenFOAM to investigate the thermal decomposition of H_2O_2. Using two different convective schemes, limited Linear and upwind, the propagation of shock wave and resultant dissociation reaction are simulated. The results of the simulations are compared with the experimental data. It is observed that the rate constant measured using the simulation data deviates from the experimental results in the low temperature range and approaches the experimental values as the temperature is raised. 展开更多
关键词 Reaction kinetics Rate constant Numerical simulation Shock wave Reflected shock wave Contact discontinuity Expansion fan Internal flow Compressible flow Gas dynamics
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