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This monograph presents a comprehensive study of dynamic gas-liquid dissolution as a new method for improving the performance and environmental efficiency of hydrocarbon fuels. It explains the physical and chemical mechanisms that allow combustible gases to dissolve in liquid fuels under non-equilibrium hydrodynamic conditions. The work describes reactor design, experimental validation, and engine tests demonstrating increased combustion efficiency and reduced emissions. Combining thermodynamics, fluid dynamics, and engineering innovation, the book introduces a scalable technology for cleaner and more efficient energy systems.…mehr

Produktbeschreibung
This monograph presents a comprehensive study of dynamic gas-liquid dissolution as a new method for improving the performance and environmental efficiency of hydrocarbon fuels. It explains the physical and chemical mechanisms that allow combustible gases to dissolve in liquid fuels under non-equilibrium hydrodynamic conditions. The work describes reactor design, experimental validation, and engine tests demonstrating increased combustion efficiency and reduced emissions. Combining thermodynamics, fluid dynamics, and engineering innovation, the book introduces a scalable technology for cleaner and more efficient energy systems.
Autorenporträt
Aleksandr Snurnikov is an engineer and researcher specializing in transportation safety, intelligent infrastructure, and applied artificial intelligence. His work bridges industrial engineering with digital logistics, focusing on AI systems for road safety, risk analytics, and sustainable freight management.