Large two-stroke marine Diesel engines have special injector geometries, which differ substantially from the configurations used in most other Diesel engine applications. One of the major differences is that injector orifices are distributed in a highly non-symmetric fashion affecting the spray characteristics. Earlier investigations demonstrated the dependency of the spray morphology on the location of the spray orifice and therefore on the resulting flow conditions at the nozzle tip. Thus, spray structure is directly influenced by the flow formation within the orifice. Following recent Large Eddy Simulation resolved spray primary breakup studies, the present paper focuses on spray secondary breakup modelling of asymmetric spray structures...
To improve the combustion and emission characteristics of the large-bore marine engines, the spray i...
The objective of this study is to investigate Spray Breakup process of sprays injected from single ...
To further increase efficiency as well as to reduce emissions of large two-stroke marine Diesel engi...
This thesis will focus on the experimental studies of in-nozzle flow and primary breakup of pressure...
The multidimensional simulation methods available today for spray motion predictions solve the spray...
[EN] In order to improve understanding of the primary atomization process for diesel-like sprays, a ...
With respect to simulating fuel sprays applied to direct injection engines, few studies in literatur...
In spite of the effort of the engine manufacturers to improve exhaust aftertreatment efficiency, thu...
This thesis focuses on the experimental studies of the cavitating in-nozzle flow of large two-stroke...
Large Eddy Simulation (LES) scheme and a new modified breakup model have been implemented in the Ope...
International audienceIn direct-injection engines, the fuel spray characteristics influence the comb...
Cutting edge experiments and thorough investigations have pointed out that radial components affect ...
A unified approach towards modeling fuel sprays for internal combustion engines has been developed i...
The break-up and evaporation of liquid jets is crucial to the efficiency of the combustion process i...
Mixture formation of the ignition process is a crucial part in diesel combustion as it affects the c...
To improve the combustion and emission characteristics of the large-bore marine engines, the spray i...
The objective of this study is to investigate Spray Breakup process of sprays injected from single ...
To further increase efficiency as well as to reduce emissions of large two-stroke marine Diesel engi...
This thesis will focus on the experimental studies of in-nozzle flow and primary breakup of pressure...
The multidimensional simulation methods available today for spray motion predictions solve the spray...
[EN] In order to improve understanding of the primary atomization process for diesel-like sprays, a ...
With respect to simulating fuel sprays applied to direct injection engines, few studies in literatur...
In spite of the effort of the engine manufacturers to improve exhaust aftertreatment efficiency, thu...
This thesis focuses on the experimental studies of the cavitating in-nozzle flow of large two-stroke...
Large Eddy Simulation (LES) scheme and a new modified breakup model have been implemented in the Ope...
International audienceIn direct-injection engines, the fuel spray characteristics influence the comb...
Cutting edge experiments and thorough investigations have pointed out that radial components affect ...
A unified approach towards modeling fuel sprays for internal combustion engines has been developed i...
The break-up and evaporation of liquid jets is crucial to the efficiency of the combustion process i...
Mixture formation of the ignition process is a crucial part in diesel combustion as it affects the c...
To improve the combustion and emission characteristics of the large-bore marine engines, the spray i...
The objective of this study is to investigate Spray Breakup process of sprays injected from single ...
To further increase efficiency as well as to reduce emissions of large two-stroke marine Diesel engi...