G Blanquart, P Pepiot-Desjardins, H Pitsch - Combustion and Flame, 2009 - Elsevier
This article presents a chemical mechanism for the high temperature combustion of a wide range of hydrocarbon fuels ranging from methane to iso-octane. The emphasis is placed on …
Ignition delays of lean mixtures of methane–hydrogen with various hydrogen volumetric contents were experimentally studied in a shock tube together with modeling analysis …
Rapid compression machine (RCM) and shock-tube facilities have been employed to study the oxidation of natural gas blends at high pressure and intermediate to high temperatures …
S Zhou, W Yang, H Tan, Q An, J Wang, H Dai… - Combustion and …, 2021 - Elsevier
Ammonia (NH 3) can help achieve large-scale storage and long-distance transportation of renewable energy. The co-firing of NH 3 with syngas and bio-syngas and increasing the …
A comprehensive experimental and modeling study of the ignition delay time (IDT) characteristics of some single prominent C1–C2 hydrocarbons including methane, ethane …
A series of shock-tube experiments and chemical kinetics modeling calculations were performed to investigate the ignition behavior of methane and ethane with oxygen in regions …
H Hashemi, JG Jacobsen, CT Rasmussen… - Combustion and …, 2017 - Elsevier
Ethane oxidation at intermediate temperatures and high pressures has been investigated in both a laminar flow reactor and a rapid compression machine (RCM). The flow-reactor …
Shock-tube experiments and chemical kinetics modeling were performed to further understand the ignition and oxidation kinetics of lean methane-based fuel blends at gas …
Here, we propose a new physically consistent modeling scheme, JIHT-OHex (C x H y), that accurately predicts the formation and consumption of electronically excited …