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Keyword [heptane]
Result: 41 - 60 | Page: 3 of 4
41. Study On The Premixed Laminar Combustion Characteristics Of Methane–n-Heptane Mixtures
42. Study Of Mechanism And Flame Characteristics Of Methane And Hydrogen Assisted N-heptane Premixed Combustion
43. Study On The Soot Characteristics Of Furan Gasoline Instead Of Mixed Fuel Under The Action Of Magnetic Field
44. Study On Combustion And Emission Characteristics Of An HCCI Engine Fueled With N-heptane/isoamyl Alcohol Blends
45. Ethanol Effect On Biodiesel/n-Heptane Auto-Ignition Characteristic
46. Study On The Combustion Characteristics Of N-heptane Droplets And Droplet Array
47. Investigation On The Ignition Characteristics Of Methane/n-heptane Mixtures
48. Study Of The Effect Of Methanol On The N-heptane Oxidation
49. Development And Numerical Simulation Of Reduced Mechanism Of Multi-component Diesel Substitute Fuels Mechanism Of Diesel
50. Study On Ignition And Combustion Characteristics Of Aluminum/heptane-based Nanofluid Fuel Droplets
51. Research On The Flame And Particle Emission Of Monodispersed N-heptane
52. Study On The Chemical Kinetic Mechanisms Of Methane/n-heptane Mixtures
53. Construction Of Low-temperature Oxidation Mechanism Of N-heptane And Simulation Of Combustion Process In Cylinder
54. Enabling HCCI combustion of n-heptane through thermo-chemical recuperation
55. Characterization of ion production using gasoline, ethanol, and N-heptane in a homogeneous charge compression ignition (HCCI) engine
56. Global combustion responses of practical hydrocarbon fuels: n-heptane, iso-octane, n-decane, n-dodecane and ethylene
57. Simulation of n-heptane and Fuels for Advanced Combustion Engines (FACE) surrogates in a single-cylinder compression ignition engine
58. Development of a high-temperature, high-pressure, optically accessible flow vessel and subsequent study of n-heptane using high-speed visualization techniques
59. Optical investigation of ethanol and n-heptane dual-fuel partially premixed combustion in a reciprocating engine
60. Measurement apparatus and modelling of laminar burning speed and mass burning rate of syngas and onset of auto-ignition of n-heptane and gas to liquid fuel
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