Gasoline anti-knock quality, defined by the research and motor octane numbers (RON and MON), is important for increasing spark ignition (SI) engine efficiency. Gasoline knock resistance can be increased using a number of blending components. For over two decades, ethanol has become a popular anti-knock blending agent with gasoline fuels due to its production from bio-derived resources. This work explores the oxidation behavior of two oxygenated certification gasoline fuels and the variation of fuel reactivity with molecular composition. Ignition delay times of Haltermann (RON = 91) and Coryton (RON = 97.5) gasolines have been measured in a high-pressure shock tube and in a rapid compression machine at three pressures of 10, 20 and 40 bar, a...
The impact of n-butanol blending on the combustion, autoignition and knock properties of gasoline ha...
In the 3D-CFD practice, actual gasoline fuels are usually replaced by surrogate blends composed of I...
Robust surrogate formulation for gasoline fuels is challenging, especially in mimicking auto-ignitio...
Gasoline anti-knock quality, defined by the research and motor octane numbers (RON and MON), is impo...
Gasoline octane number is a significant empirical parameter for the optimization and development of ...
As regulatory measures for improved fuel economy and decreased emissions are pushing gasoline engine...
A systematic analysis of knocking combustion at the knock limit in a single-cylinder research engine...
Petroleum derived gasoline is the most used transportation fuel for light-duty vehicles. In order to...
Understanding the autoignition characteristics of gasoline is essential for the development and desi...
This paper presents experimental and modeling data for the autoignition of a novel, six-component, h...
The impact of n-butanol blending on the combustion, autoignition and knock properties of gasoline ha...
In the 3D-CFD practice, actual gasoline fuels are usually replaced by surrogate blends composed of I...
Robust surrogate formulation for gasoline fuels is challenging, especially in mimicking auto-ignitio...
Gasoline anti-knock quality, defined by the research and motor octane numbers (RON and MON), is impo...
Gasoline octane number is a significant empirical parameter for the optimization and development of ...
As regulatory measures for improved fuel economy and decreased emissions are pushing gasoline engine...
A systematic analysis of knocking combustion at the knock limit in a single-cylinder research engine...
Petroleum derived gasoline is the most used transportation fuel for light-duty vehicles. In order to...
Understanding the autoignition characteristics of gasoline is essential for the development and desi...
This paper presents experimental and modeling data for the autoignition of a novel, six-component, h...
The impact of n-butanol blending on the combustion, autoignition and knock properties of gasoline ha...
In the 3D-CFD practice, actual gasoline fuels are usually replaced by surrogate blends composed of I...
Robust surrogate formulation for gasoline fuels is challenging, especially in mimicking auto-ignitio...