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1989, Advances in thermodynamics., ISBN 9780844815657, Volume 1, 235
Book
International Journal of Hydrogen Energy, ISSN 0360-3199, 2011, Volume 36, Issue 23, pp. 15392 - 15402
Journal Article
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 8/2018, Volume 133, Issue 2, pp. 1109 - 1113
We report the experimental studies of phase transitions in [xH2O + (1 − x) C7H16] system with x = 0.295 mol fraction (m.f.) of polar component. The... 
Polymer Sciences | Chemistry | Analytical Chemistry | Isochoriс heat capacity | Measurement Science and Instrumentation | Physical Chemistry | Phase equilibria | Inorganic Chemistry | n -heptane—water | Phase transition | n-heptane—water | Specific gravity
Journal Article
Proceedings of the Combustion Institute, ISSN 1540-7489, 2009, Volume 32, Issue 1, pp. 753 - 759
There is a need for prediction models of soot particles and polycyclic aromatic hydrocarbons (PAHs) formation in parametric conditions prevailing in automotive... 
Modelling | Heptane | Iso-octane | Soot | Heptane; iso-octane | FLAMES | OXIDATION | N-HEPTANE | ENERGY & FUELS | HYDROCARBON FORMATION | ISOOCTANE | ENGINEERING, MECHANICAL | ENGINEERING, CHEMICAL | PRESSURE | THERMODYNAMICS | GROWTH
Journal Article
Applied Thermal Engineering, ISSN 1359-4311, 05/2016, Volume 101, pp. 202 - 216
Although pressure chambers have been extensively employed to examine the pressure effect on fire behaviors at high altitudes, the results have not been... 
n-Heptane pool fire | Enclosure effect | Field test | Altitude chamber | Low pressure | LOW AIR-PRESSURE | N-HEPTANE | DIFFUSION FLAMES | ENERGY & FUELS | COMBUSTION CHARACTERISTICS | FIELD | ENGINEERING, MECHANICAL | OXYGEN | MECHANICS | THERMODYNAMICS | PLUMES | ETHANOL | HEPTANE POOL FIRES
Journal Article
Combustion and Flame, ISSN 0010-2180, 05/2015, Volume 162, Issue 5, pp. 1623 - 1637
Journal Article
Fuel, ISSN 0016-2361, 01/2019, Volume 235, pp. 522 - 529
Ignition delay times of methane– -heptane mixtures at different methane contents were determined at various initial temperatures through a shock tube setup.... 
Methane–n-heptane mixtures | Ignition delay time | Shock tube | Chemical kinetics | FUEL BLENDS | COMBUSTION | Methane-n-heptane mixtures | SHOCK-TUBE | EMISSIONS | ENERGY & FUELS | ELEVATED PRESSURES | NATURAL-GAS | ENGINEERING, CHEMICAL | HYDROGEN | ENGINE CONDITIONS | TEMPERATURES | DELAY TIMES | Methane | Chemical reaction, Rate of | Analysis | Radicals | Decomposition (Chemistry)
Journal Article
Progress in Energy and Combustion Science, ISSN 0360-1285, 03/2018, Volume 65, pp. 67 - 108
Petroleum-derived gasoline is currently the most widely used fuel for transportation propulsion. The design and operation of gasoline fuels is governed by... 
RAPID-COMPRESSION MACHINE | JET-STIRRED REACTOR | ENERGY & FUELS | LAMINAR BURNING VELOCITIES | IGNITION DELAY TIMES | N-HEPTANE OXIDATION | ENGINEERING, MECHANICAL | ENGINEERING, CHEMICAL | CHEMICAL KINETIC-MODELS | LOW-TEMPERATURE OXIDATION | THERMODYNAMICS | QUALITY TESTER IQT | TOLUENE REFERENCE FUELS | SHOCK-TUBE IGNITION
Journal Article