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Improve heat engine efficiency.
Here's how:
1. Ensure the flexibility and tightness of piston sliding. Ensure good lubrication, reasonably adjust the gap between moving parts, and reduce the additional energy consumed due to overcoming friction.
2. Ensure that the fuel injector is intact and the spray is uniform.
3. Reduce the friction at the connecting rod shaft, etc.
4. Use appropriate fuel to make the fuel fully combusted.
5. Minimize all kinds of heat loss, and reuse the inevitable heat loss. For example, other uses such as heating water.
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1. Reduce all kinds of heat loss (such as exhaust gas, heat taken away by cooling water).
2. Add lubricating oil to reduce the friction of mechanical parts.
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Reduce all kinds of heat loss of the heat engine and ensure good .
lubrication, which increases the ratio of energy used effectively to total energy.
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1. Use thermal insulation materials with better performance to make heat engines.
2. Exhaust gas**.
The air entering the heat engine is heated by using or circulating.
3. Fuel atomization promotes full combustion.
4. Ensure that the piston slides flexibly and has good sealing.
5. Ensure that the nozzle is undamaged and the spray is uniform.
6. The friction of the connecting rod and the rotating shaft is small.
7. Use suitable fuel.
8. For the inevitable heat loss, it can be used for heating water and other purposes.
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Improve the structure and performance of the heat engine, and reduce all kinds of heat loss;
Maintain good lubrication, reduce friction and thus reduce the loss of mechanical energy that has been gained;
Improving combustion conditions to make the fuel as fully burned as possible are important ways to improve the efficiency of the heat engine.
Improving the efficiency of the heat engine can reduce consumption, improve economic efficiency, and at the same time save significant energy.
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1. Adopt reasonable design to increase the thermal cycle efficiency; 2. Adopt a new way of working, eliminate the ventilation mechanism, and eliminate the loss of ventilation; 3. Use high-temperature materials to eliminate water cooling loss; 4. The information technology digital rotation mechanism is adopted to eliminate the crankshaft piston and reduce the mechanical loss;
5. Adopt independent combustion reaction facilities to improve combustion efficiency and reduce pollution emissions.
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1. Use thermal insulation materials with better performance to make heat engines.
2. The exhaust gas is used or circulated to heat the air entering the heat engine;
3. Fuel atomization promotes full combustion.
4. Strengthen lubrication and reduce friction loss energy.
Heat engines refer to various types of machinery that use internal energy to do work. It is a type of machine power machinery that converts the chemical energy of fuel into internal energy and then into mechanical energy, such as steam engines, steam turbines, gas turbines, internal combustion engines, and jet engines. The heat engine usually uses gas as the working fluid (the medium substance for transferring energy is called the working fluid), and uses the gas to expand by heating to do external work.
The main types of thermal energy include thermal energy generated by fuel combustion, atomic energy, solar energy and geothermal.
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Reducing all kinds of heat losses in the heat engine and ensuring good lubrication can improve the ratio of effectively used energy to total energy.
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1. Ensure that the piston slides flexibly and has good sealing.
2. Ensure that the nozzle is undamaged and the spray is uniform.
3. The friction of the connecting rod and the shaft is small.
4. Use appropriate fuel.
5. For the inevitable loss of heat energy, it can be used for other purposes such as heating water.
The efficiency of the heat engine has been an important issue for scientists, inventors and engineers since the invention of the heat engine. Although the efficiency of internal combustion engines and jet engines has improved a lot compared with the original steam engine, the efficiency of heat engines is far from satisfactory from the perspective of energy saving requirements.
The best airjet engines are only 60% efficient under ideal conditions. The most widely used internal combustion engine is only 40% efficient at most, and energy is wasted.
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1. Use thermal insulation materials with better performance to make heat engines.
2. The exhaust gas is used or circulated to heat the air entering the heat engine;
3. Fuel atomization promotes full combustion.
4. Ensure that the piston slides flexibly and has good sealing.
5. Ensure that the nozzle is undamaged and the spray is uniform.
6. The friction of the connecting rod and the rotating shaft is small.
7. Use suitable fuel.
8. For the inevitable heat loss, it can be used for heating water and other purposes.
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Try to make the fuel fully combusted, minimize all kinds of heat loss, and maintain good lubrication between parts to reduce friction.
Heat engine efficiency refers to the ratio of the heat converted into mechanical work in the working part of the heat engine to the heat obtained by the working fluid from the heater.
If denoted by t, there is t=w q1=( q1-q2) q1=1- q2 q1. The heat engine efficiency formula should be =q with q amp 100%.
It is evident from the equation that the larger Q1 and the smaller Q2, the higher the thermal efficiency, which is the main part of the heat engine efficiency, and it indicates the degree of utilization of hail heat in the Yusongfan heat engine.
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