Skip to main navigation
Skip to search
Skip to main content
The University of Brighton Home
Search content at The University of Brighton
Home
Profiles
Research units
Equipment
Projects
Research output
Activities
Student theses
Microscopic imaging of the initial stage of diesel spray formation
Cyril Crua
, Morgan Heikal
, Martin Gold
University of Brighton
Advanced Engineering Centre
Centre for Regenerative Medicine and Devices
Research output
:
Contribution to journal
›
Article
›
peer-review
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Microscopic imaging of the initial stage of diesel spray formation'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Diesel Spray
100%
Diesel Fuel
100%
Spray Forming
100%
Microscopic Imaging
100%
Liquid Fuel
66%
In-cylinder
66%
Injector
66%
Orifice
66%
Residual Liquid
66%
Numerical Model
33%
Microscopy
33%
Engine Conditions
33%
Mushroom-like
33%
Fuel Injector
33%
Nozzle
33%
End of Injection
33%
High Temporal Resolution
33%
Ligament
33%
Slipstream Effect
33%
Stagnation Point
33%
Shear Instability
33%
Million Images
33%
Atmospheric Conditions
33%
Vortex Ring
33%
Engine-relevant Condition
33%
Diesel-biodiesel
33%
Biodiesel Fuel
33%
Near Nozzle
33%
Near-nozzle Spray
33%
Fuel Atomization
33%
Primary Atomization
33%
Partially Filled
33%
Hydrocarbons Content
33%
Physical Processes
33%
Ultrafast
33%
Nozzle Orifice
33%
High Speed Framing Camera
33%
High Spatial Resolution
33%
Kerosene Fuel
33%
Dense Fluids
33%
Nozzle Hole
33%
Engineering
Initial Stage
100%
Orifice
100%
Gas Cylinder
66%
Diesel Fuel
66%
Initial Condition
33%
Vortex
33%
Numerical Model
33%
Atomisation
33%
Frame Rate
33%
Spatial Resolution
33%
Slipstream
33%
Biodiesel
33%
Primary Atomization
33%
Mushroom-Like Structure
33%
Dense Fluid
33%
Temporal Resolution
33%
Stagnation Point
33%
Chemical Engineering
Atomizer Nozzle
100%
Earth and Planetary Sciences
Physical Process
50%