Internal combustion engines are the most common sources of energy among heat engines. Therefore, the improvement of their design and workflow is an urgent task in the development of world energy. Thermal-mechanical perfection of the exhaust system has a significant impact on the technical and economic performance of piston engines. The article presents the results of experimental studies of gas-dynamics and heat exchange of pulsating gas flows in the exhaust system of a piston engine. Studies were carried out on a full-scale model of a single-cylinder engine. The article describes the instrument-measuring base and methods of experiments. The heat transfer intensity was estimated in different elements of the exhaust system: the exhaust pipe,...
AbstractIt is known that more than 80% of global energy is produced by internal combustion engines. ...
Modern compression ignition engines offer higher thermal efficiency compared to gasoline engines, th...
Thermomechanical perfection of intake and exhaust systems largely determine the efficiency of the wo...
Internal combustion engines are the most common sources of energy among heat engines. Therefore, the...
Gas-dynamic perfection and intensity of heat exchange of intake systems determine the efficiency of ...
The improvement of work processes of piston engines to boost the technical and economic parameters i...
Batch machines are actively used in industry and energy. Internal combustion engines are a prime exa...
Currently the turbocharging is actively used in piston engines to increase their technical and econo...
It is a relevant objective in thermal physics and in building reciprocating internal combustion engi...
Piston internal combustion engines (ICE) are the most common sources of energy among heat engines. C...
The main tasks of experimental research of thermal and mechanic processes in the intake and exhaust ...
AbstractThe article reveals the investigation results of the energy datum of exhaust gases emitted i...
It is known that more than 80% of global energy is produced by internal combustion engines. Therefor...
Thermomechanical perfection of exhaust systems largely determines the efficiency of the engine boost...
The results of an experimental study of the effect of the gas-dynamic non-stationarity on gas dynami...
AbstractIt is known that more than 80% of global energy is produced by internal combustion engines. ...
Modern compression ignition engines offer higher thermal efficiency compared to gasoline engines, th...
Thermomechanical perfection of intake and exhaust systems largely determine the efficiency of the wo...
Internal combustion engines are the most common sources of energy among heat engines. Therefore, the...
Gas-dynamic perfection and intensity of heat exchange of intake systems determine the efficiency of ...
The improvement of work processes of piston engines to boost the technical and economic parameters i...
Batch machines are actively used in industry and energy. Internal combustion engines are a prime exa...
Currently the turbocharging is actively used in piston engines to increase their technical and econo...
It is a relevant objective in thermal physics and in building reciprocating internal combustion engi...
Piston internal combustion engines (ICE) are the most common sources of energy among heat engines. C...
The main tasks of experimental research of thermal and mechanic processes in the intake and exhaust ...
AbstractThe article reveals the investigation results of the energy datum of exhaust gases emitted i...
It is known that more than 80% of global energy is produced by internal combustion engines. Therefor...
Thermomechanical perfection of exhaust systems largely determines the efficiency of the engine boost...
The results of an experimental study of the effect of the gas-dynamic non-stationarity on gas dynami...
AbstractIt is known that more than 80% of global energy is produced by internal combustion engines. ...
Modern compression ignition engines offer higher thermal efficiency compared to gasoline engines, th...
Thermomechanical perfection of intake and exhaust systems largely determine the efficiency of the wo...