The paper reports a combined experimental and numerical investigation of a small unit displacement two-stroke SI engine operated with either Gasoline and Natural Gas (CNG). It is widely recognized that for two-stroke, crankcase scavenged, carbureted engines the scavenging patterns (fuel short-circuiting, residual gas distribution, point wise lambda field, etc.) plays a fundamental role on both engine performance and tailpipe emissions. To properly characterize the engine behavior in terms of scavenging patterns and combustion, a detailed multi-cycle 3D-CFD analysis of the scavenging process is at first performed starting from preliminary 1D computed boundary conditions provided by a in-house developed 1D model of the whole engine. In orde...
Abstract Recent trends in gasoline engines, such as downsizing, downspeeding and the increase of the...
Computer models of engine processes are valuable tools for predicting and analyzing engine performan...
Knocking combustions heavily limits the efficiency of Spark Ignition engines. The compression ratio ...
The paper reports a combined experimental and numerical investigation of a small unit displacement t...
The paper presents a combined experimental and numerical investigation of a small unit displacement ...
Knock occurrence is a widely recognized phenomenon to be controlled during the development and optim...
Knock occurrence is a widely recognized phenomenon to be controlled during the development and optim...
The paper presents a 1D-3D numerical model to simulate the scavenging and combustion processes in a...
Knock is an abnormal combustion phenomena capable of causing serious damage to spark ignition engine...
The further thermal efficiency improvement of marine natural gas engine is constrained by a knocking...
In the present work, a numerical methodology based on three-dimensional (3D) computational fluid dyn...
The increasing limitations in engine emissions and fuel consumption have led researchers to the need...
Abstract Recent trends in gasoline engines, such as downsizing, downspeeding and the increase of the...
Computer models of engine processes are valuable tools for predicting and analyzing engine performan...
Knocking combustions heavily limits the efficiency of Spark Ignition engines. The compression ratio ...
The paper reports a combined experimental and numerical investigation of a small unit displacement t...
The paper presents a combined experimental and numerical investigation of a small unit displacement ...
Knock occurrence is a widely recognized phenomenon to be controlled during the development and optim...
Knock occurrence is a widely recognized phenomenon to be controlled during the development and optim...
The paper presents a 1D-3D numerical model to simulate the scavenging and combustion processes in a...
Knock is an abnormal combustion phenomena capable of causing serious damage to spark ignition engine...
The further thermal efficiency improvement of marine natural gas engine is constrained by a knocking...
In the present work, a numerical methodology based on three-dimensional (3D) computational fluid dyn...
The increasing limitations in engine emissions and fuel consumption have led researchers to the need...
Abstract Recent trends in gasoline engines, such as downsizing, downspeeding and the increase of the...
Computer models of engine processes are valuable tools for predicting and analyzing engine performan...
Knocking combustions heavily limits the efficiency of Spark Ignition engines. The compression ratio ...