Laminar burning velocity of N-BUTANE (cas 106-97-8)/Hydrogen/Air mixtures at elevated temperatures
-
Add time:08/19/2019 Source:sciencedirect.com
The effect of hydrogen (H2) addition in the laminar burning velocity (LBV) of n-butane-air at elevated temperatures is described in this paper. For various equivalence ratios (ϕ), ranging from 0.7 to 1.3, LBV was measured for 20%, 40% and 60% H2 addition to n-butane using a preheated mesoscale diverging channel technique. Using this experimental technique, LBV measurements were conducted for unburnt mixture temperature up to 450 K. The maximum burning velocity has been obtained at equivalence ratio 1.1 for all the mixture conditions. The LBV results at atmospheric condition for n-butane-hydrogen-air mixture were obtained by extrapolating the experimental data at elevated temperatures. “Heat flux method” experimental setup was used for measuring the LBV of n-butane-hydrogen-air mixture at atmospheric condition. The results obtained for LBV at atmospheric conditions with the two different methods at 0%, 20%, 40% and 60% H2 composition in n-butane were found to be in good agreement. The experimental results of LBV for n-butane were compared with the numerical predictions using USC mech II, Aramco mech 2.0 and LLNL reaction mechanisms. The numerical predictions of LBV using Aramco mech 2.0 shows good agreement with experimental data at rich, lean and stoichiometric mixture conditions.
We also recommend Trading Suppliers and Manufacturers of N-BUTANE (cas 106-97-8). Pls Click Website Link as below: cas 106-97-8 suppliers
Prev:N-BUTANE (cas 106-97-8) dehydrogenation over Ni-Sn/SiO2: Adsorption modes and reaction paths of N-BUTANE (cas 106-97-8) and 1-butene
Next:Experimental and kinetic modeling investigation on pyrolysis and combustion of N-BUTANE (cas 106-97-8) and i-butane at various pressures) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Full Length ArticleThe Rate-Controlled Constrained-Equilibrium combustion modeling of N-BUTANE (cas 106-97-8)/oxygen/diluent mixtures08/25/2019
- Propane, N-BUTANE (cas 106-97-8) and i-butane stabilization effects on methane gas hydrates08/24/2019
- Time-resolved CO2 concentration and ignition delay time measurements in the combustion processes of N-BUTANE (cas 106-97-8)/hydrogen mixtures08/23/2019
- Quantitative determination of N-BUTANE (cas 106-97-8) metabolites in three cases of butane sniffing death08/22/2019
- Investigation of the low-temperature oxidation of n-butanal in a jet-stirred reactor08/21/2019
- Experimental and kinetic modeling investigation on pyrolysis and combustion of N-BUTANE (cas 106-97-8) and i-butane at various pressures08/20/2019
- N-BUTANE (cas 106-97-8) dehydrogenation over Ni-Sn/SiO2: Adsorption modes and reaction paths of N-BUTANE (cas 106-97-8) and 1-butene08/18/2019


