Thermomechanical perfection of intake and exhaust systems largely determine the efficiency of the working process of reciprocating engines (ICE). The article presents the results of numerical simulation and experimental study of the heat transfer of gas flows in profiled gas- air systems of ICEs. A description of the numerical simulation technique, experimental setup, configurations of the studied hydraulic systems, measuring base and features of the experiments are given. On the basis of numerical modeling, it has been established that the use of profiled sections with cross sections in the shape of a square or a triangle in exhaust systems of an ICEs leads to a decrease in the heat transfer coefficient by 5-11%. It is shown that the use o...
Currently the turbocharging is actively used in piston engines to increase their technical and econo...
Reciprocating engines (RICE) are widely used as heat engines to convert the chemical energy of fuel ...
It is a relevant objective in thermal physics and in building reciprocating internal combustion engi...
Thermomechanical perfection of exhaust systems largely determines the efficiency of the engine boost...
Gas-dynamic perfection and intensity of heat exchange of intake systems determine the efficiency of ...
Internal combustion engines are the most common sources of energy among heat engines. Therefore, the...
There the study objects are 1ChN 13/14, 4Ch 10,5/12, 8ChN 12/12, 4ChN 15/18 four-stroke Diesel engin...
The main tasks of experimental research of thermal and mechanic processes in the intake and exhaust ...
Piston internal combustion engines (ICE) are the most common sources of energy among heat engines. C...
The results of mathematical modeling and experimental studies of the gas exchange processes in the i...
It is known that more than 80% of global energy is produced by internal combustion engines. Therefor...
This work concerns heat transfer principles in four strokes ICE from modeling and simulation standpo...
It is known that the thermal and mechanical characteristics of the air flow in the output channel of...
The improvement of work processes of piston engines to boost the technical and economic parameters i...
AbstractIt is known that more than 80% of global energy is produced by internal combustion engines. ...
Currently the turbocharging is actively used in piston engines to increase their technical and econo...
Reciprocating engines (RICE) are widely used as heat engines to convert the chemical energy of fuel ...
It is a relevant objective in thermal physics and in building reciprocating internal combustion engi...
Thermomechanical perfection of exhaust systems largely determines the efficiency of the engine boost...
Gas-dynamic perfection and intensity of heat exchange of intake systems determine the efficiency of ...
Internal combustion engines are the most common sources of energy among heat engines. Therefore, the...
There the study objects are 1ChN 13/14, 4Ch 10,5/12, 8ChN 12/12, 4ChN 15/18 four-stroke Diesel engin...
The main tasks of experimental research of thermal and mechanic processes in the intake and exhaust ...
Piston internal combustion engines (ICE) are the most common sources of energy among heat engines. C...
The results of mathematical modeling and experimental studies of the gas exchange processes in the i...
It is known that more than 80% of global energy is produced by internal combustion engines. Therefor...
This work concerns heat transfer principles in four strokes ICE from modeling and simulation standpo...
It is known that the thermal and mechanical characteristics of the air flow in the output channel of...
The improvement of work processes of piston engines to boost the technical and economic parameters i...
AbstractIt is known that more than 80% of global energy is produced by internal combustion engines. ...
Currently the turbocharging is actively used in piston engines to increase their technical and econo...
Reciprocating engines (RICE) are widely used as heat engines to convert the chemical energy of fuel ...
It is a relevant objective in thermal physics and in building reciprocating internal combustion engi...