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Combustion of minimally processed coal liquids in a diesel engine
M. R. Ahmadi
, David B Kittelson
, D. D. Brehob
Mechanical Engineering
Research output
:
Contribution to conference
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Paper
›
peer-review
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Dive into the research topics of 'Combustion of minimally processed coal liquids in a diesel engine'. Together they form a unique fingerprint.
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Keyphrases
Diesel Engine
100%
Combustion
100%
Minimally Processed
100%
Coal Liquids
100%
Cetane number
45%
Diesel Fuel
18%
Inlet Air
18%
Cylinder Pressure
18%
Reference Fuels
18%
North Dakota
9%
Three-dimensional (3D)
9%
Maximum Rate
9%
Methyl
9%
Fuel Consumption
9%
Diesel
9%
Operating Conditions
9%
Activation Energy
9%
Nonlinear Regression
9%
Arrhenius Equation
9%
Atmospheric Air
9%
Heat Release Rate
9%
Compression Ratio
9%
Combustion Characteristics
9%
Thermal Efficiency
9%
CO2 Levels
9%
Engine Operating Conditions
9%
Coal Gasification
9%
Air Blowing
9%
Combustion Emissions
9%
Soot Concentration
9%
Pressurized Oxygen
9%
Lignite
9%
Cetane
9%
Napthalene
9%
Air-fuel Mixture
9%
Ignition Characteristics
9%
Boiling Range
9%
Thermal NOx
9%
Exhaust Soot
9%
Overall Equivalence Ratio
9%
Emisions
9%
Ignition Performance
9%
Oxygen Blowing
9%
Engine Ignition
9%
Lurgi Gasifier
9%
Atmospheric Distillation
9%
Ignition Delay Time
9%
Engineering
Diesel Engine
100%
Antiknock Rating
100%
Inlet Air
40%
Reference Fuel
40%
Cylinder Pressure
40%
Diesel Fuel
40%
Equivalence Ratio
20%
Nonlinear Regression
20%
Ignition
20%
Ignition Engine
20%
Ignition Delay
20%
Coal Gasification
20%
Engine Operating
20%
Arrhenius-Type Equation
20%
Atmospheric Air
20%
Lignite
20%
Gasifiers
20%
Rate of Heat Release
20%
Activation Energy
20%
Compression Ratio
20%
Combustion Analysis
20%
Atmospheric Distillation
20%
Thermodynamic Efficiency
20%