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Constant volume chamber (CVC) was adopted to measure the laminar burning velocity (LBV) and Markstein length of hydrous ethanol/RP-3 mixed fuel at initial temperature = 450 K, initial pressure = 0.1 MPa, and equivalence ratio ϕ = 0.8-1.4 with hydrous ethanol blending ratio of 0.2, and the effects of the water content in hydrous ethanol on the LBV and were studied. It is found that with the increased water ratio, the LBV of hydrous ethanol/RP-3 decreases. Kinetic analysis of chemical reactions shows that with the increased water ratio the generations of CH and CH decreased because of more OH radicals participating in the key reactions. Meanwhile, the concentrations of H, O, and OH radicals decreased too, which inhibits the LBV of hydrous ethanol/RP-3. The results also show that with the increased water ratio, the of hydrous ethanol/RP-3 increased, which means that the water content in hydrous ethanol would be beneficial to improve combustion stability. The experimental data obtained in our study will bring theoretical basis and technical support for the use of bioethanol in thermodynamic machinery.
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http://dx.doi.org/10.1021/acsomega.4c11580 | DOI Listing |
ACS Omega
March 2025
Liaoning Key Lab of Advanced Test Technology for Aerospace Propulsion System, Shenyang Aerospace University, Liaoning, Shenyang 110136, P.R. China.
Constant volume chamber (CVC) was adopted to measure the laminar burning velocity (LBV) and Markstein length of hydrous ethanol/RP-3 mixed fuel at initial temperature = 450 K, initial pressure = 0.1 MPa, and equivalence ratio ϕ = 0.8-1.
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