he auto-ignition process of propane/oxygen mixtures was experimentally and numerically studied over a range of temperatures (850-1250K) and mixture compositions (from fuel-ultra-lean to fuel-rich conditions) under MILD operative conditions. The mixtures were diluted in CO2 or H2O from 90 up to 97%. The experimental tests were realized in a Tubular Flow Reactor (TFR) at atmospheric pressure.Several combustion regimes were identified as a function of the mixture composition and inlet temperature. The experimental results showed that CO2 and H2O significantly alter the ignition process. In particular, a significant slowing of the system reactivity was observed with respect to the mixtures that were diluted in nitrogen.Numerical simulations wer...
MILD combustion is a very attractive technology because of its intrinsic features for energy product...
The spontaneous ignition delay time of hydrogen-air mixtures has been studied experimentally and num...
This paper presents ignition delay times of methane oxidation diluted with carbon dioxide and argon....
he auto-ignition process of propane/oxygen mixtures was experimentally and numerically studied over ...
he auto-ignition process of propane/oxygen mixtures was experimentally and numerically studied over ...
he auto-ignition process of propane/oxygen mixtures has been widely studied in several facilities. L...
he auto-ignition process of propane/oxygen mixtures has been widely studied in several facilities. L...
he auto-ignition process of propane/oxygen mixtures has been widely studied in several facilities. L...
Ignition and oxidation characteristics of CO/H2 fuel blends were studied using both experimental and...
Ignition and oxidation characteristics of CO/H2 fuel blends were studied using both experimental and...
Ignition and oxidation characteristics of CO/H-2 fuel blends were studied using both experimental an...
Ignition and oxidation characteristics of CO/H2 fuel blends were studied using both experimental and...
Ignition and oxidation characteristics of CO/H2 fuel blends were studied using both experimental and...
MILD combustion is a very attractive technology because of its intrinsic features for energy product...
MILD combustion is a very attractive technology because of its intrinsic features for energy product...
MILD combustion is a very attractive technology because of its intrinsic features for energy product...
The spontaneous ignition delay time of hydrogen-air mixtures has been studied experimentally and num...
This paper presents ignition delay times of methane oxidation diluted with carbon dioxide and argon....
he auto-ignition process of propane/oxygen mixtures was experimentally and numerically studied over ...
he auto-ignition process of propane/oxygen mixtures was experimentally and numerically studied over ...
he auto-ignition process of propane/oxygen mixtures has been widely studied in several facilities. L...
he auto-ignition process of propane/oxygen mixtures has been widely studied in several facilities. L...
he auto-ignition process of propane/oxygen mixtures has been widely studied in several facilities. L...
Ignition and oxidation characteristics of CO/H2 fuel blends were studied using both experimental and...
Ignition and oxidation characteristics of CO/H2 fuel blends were studied using both experimental and...
Ignition and oxidation characteristics of CO/H-2 fuel blends were studied using both experimental an...
Ignition and oxidation characteristics of CO/H2 fuel blends were studied using both experimental and...
Ignition and oxidation characteristics of CO/H2 fuel blends were studied using both experimental and...
MILD combustion is a very attractive technology because of its intrinsic features for energy product...
MILD combustion is a very attractive technology because of its intrinsic features for energy product...
MILD combustion is a very attractive technology because of its intrinsic features for energy product...
The spontaneous ignition delay time of hydrogen-air mixtures has been studied experimentally and num...
This paper presents ignition delay times of methane oxidation diluted with carbon dioxide and argon....