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International Journal of Heat and Mass Transfer, ISSN 0017-9310, 2005, Volume 48, Issue 14, pp. 2955 - 2969
Several important modifications to the flow pattern map of Kattan–Thome–Favrat [J. Heat Transfer 120(1) (1998) 140–147] made, resulting in a significantly new version of the map... 
Flow boiling | Flow pattern maps | Dryout | Flow regimes | Two-phase flow | dryout | HEAT-TRANSFER | INTERFACIAL MEASUREMENTS | ANGLE | PIPE | ENGINEERING, MECHANICAL | two-phase flow | STRATIFIED TYPES | MECHANICS | THERMODYNAMICS | flow boiling | flow regimes | CONDENSATION | flow pattern maps
Journal Article
SAE technical paper series, Volume 750024.
...), carbon monoxide, carbon dioxide, oxygen, and nitric oxide (NO). The measurements show that the exhaust flow can be divided into two distinct phases... 
Exhaust emissions | Stratified charge engines | Emissions
eJournal
SAE technical paper series, Volume 890331.
This study involves the development of high speed flow visualization and laser doppler velocimetry (LDV... 
Rotary engines | Stratified charge engines | Fuel injection
eJournal
SAE technical paper series, Volume 800136.
.... Flow visualization of the stratified charge combustion revealed substantial differences in mixture burn characteristics and combustion duration as the ignition crank angle was varied. Quenching of the burning mixture was observed and its occurrence was correlated with the Raman measurements. 
Spectroscopy | Stratified charge engines | Fuel injection
eJournal
SAE technical paper series, Volume 741170.
The flow and combustion processes of a three-valve, stratified charge engine with small prechamber are examined for exhaust emissions... 
Stratified charge engines
eJournal
SAE technical paper series, Volume 940986.
Flow and flame structure visualization and modeling were performed to clarify the characteristics of bulk flow, turbulence and mixing in a four-valve engine to adopt the lean combustion concept named... 
Stratified charge engines | Spark ignition engines
eJournal
SAE technical paper series, Volume 790290.
A PROCO Flow Simulation (PFSIM) model has been developed to calculate the angular velocity (swirl... 
Diesel / Compression Ignition engines | Simulation and Modeling | Stratified charge engines
eJournal
SAE technical paper series, Volume 2003-01-0635.
In-cylinder flow was optimised in a three-valve twin-spark-plug SI engine in order to obtain good two-zone fuel fraction stratification in the cylinder by means of tumble flow... 
Test equipment and instrumentation | Emissions control | Valves | Stratified charge engines | Spark ignition engines | Emissions
eJournal
SAE technical paper series, Volume 860615.
A numerical study was performed to investigate the unsteady, multidimensional flow inside the combustion chambers of an idealized, two-dimensional, rotary engine under motored conditions... 
Diesel / Compression Ignition engines | Mathematical analysis | Energy conservation | Rotary engines | Stratified charge engines | Combustion chambers | Fuel injection | Aviation fuels
eJournal
SAE technical paper series, Volume 840005.
.... It is therefore, attempted to model in-cylinder flows, fuel-air mixing and fuel property effects... 
Diesel / Compression Ignition engines | Multifuel engines | Electrical, Electronics, and Avionics | Stratified charge engines | Diesel fuels | Alternative fuels
eJournal
SAE technical paper series, Volume 1999-01-3540
This paper presents an investigation of a Volvo Direct Injection Spark Ignition (DISI) engine, where the fuel distribution and the in-cylinder flow field have been mapped by the use of laser techniques in an engine with optical access... 
Lasers | Stratified charge engines | Fuel injection | Spark ignition engines
eJournal
SAE technical paper series, Volume 870409.
The first three-dimensional rotary-engine computations are reported of exhaust, intake (with side and peripheral ports, and with different intake turbulence... 
Diesel / Compression Ignition engines | Rotary engines | Stratified charge engines | Fuel injection
eJournal
RSC advances, ISSN 2046-2069, 2019, Volume 9, Issue 56, pp. 32644 - 32655
In view of the widespread existence of swirl flow in surfactant systems in oil drilling, gas gathering, and gathering pipelines, surfactants can affect interfacial tension and thus change the flow pattern... 
AIR | HORIZONTAL TUBES | SPIRAL FLOW | PIPE | CHEMISTRY, MULTIDISCIPLINARY | Two phase flow | Computational fluid dynamics | Pipelines | Drill pipe | Flow characteristics | Surfactants | Flow stability | Technical services | Coconut oil | Interface stability | Pressure drop | Flow control | Gas pipelines | Flow velocity | Liquid flow | Surface tension | Slug flow | Axial flow | Natural gas | Petroleum pipelines | Stratified flow
Journal Article