It is surprising to discover that even in diesel engines, with a clear trend towards their disappearance, advances are being made to improve performance in all senses, although perhaps they are not intended for use in vehicles but in industrial contexts, as, for example, in the case of this engine from the Chinese company Weichei Power.
Be that as it may, the engines we have, now immersed in the 21st century, are all committed to a lower environmental impact, without sacrificing power.
These are some of the most popular trends for vehicles.
Direct injection engines
In fuel injection engines, the fuel goes directly into the combustion chamber.
This optimizes the air-fuel mixture, improves combustion and maximizes engine efficiency.
The electronic system continuously adjusts the amount of fuel injected to suit driving conditions, offering an ideal combination of energy efficiency and controlled power.
If you are interested in learning more about this type of engine, we invite you to discover the innovative liquid propane direct injection engines. It sounds like science fiction, but they are not.
Turbocharged engines
In turbocharged engines, a turbocharger drives a turbine that compresses the incoming air.
What does this mean?
Compression favors a greater amount of oxygen. This additional oxygen allows a more complete combustion, enriching the mixture, and makes it possible to add more fuel in the same space allotted to the engine.
Hybrid engines
Hybrid engines combine an internal combustion engine with one or more electric motors, taking advantage of the best of both worlds to achieve superior efficiency.
Using the electric motor at off-peak times reduces exhaust emissions. Another plus point is that hybrid vehicles reduce dependence on fossil fuel. This not only lowers the vehicle’s operating costs but also the owner’s overall carbon footprint.
Brands such as Toyota and Lexus have been using hybrid engines for years.
Start-Stop Technology
Start-stop systems switch off the engine when the vehicle comes to a standstill, such as at traffic lights or in traffic jams, for example, and restart it quickly when driving resumes.
This function ensures a smooth and efficient restart, minimizing fuel consumption and emissions during periods of inactivity. Very useful in urban environments.
Regenerative braking
Regenerative braking transforms the kinetic energy generated during braking into electrical energy. This is stored in batteries for later use, reducing the load on the internal combustion engine and improving overall vehicle efficiency. It also contributes to more environmentally friendly driving.
Finally, we recommend you read this article where this type of technology and the advantages of regenerative braking are explained in more detail.
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