WHY THE EV REDUCES ENGINE OIL CONSUMPTION?

The loss of engine oil in a motor vehicle can be primarily attributed to both of these factors:

1. 1. The machine normal deterioration concomitant to the extended run mileage and vehicle use (60%).

2. 2. The constant loss of viscosity in all engine oils (40%).
Being deterioration an irreversible factor that only can be corrected through costly mechanical repair, it is the second issue which can actually be addressed and controlled by the prompt installing of an altitude compensator device or ecological valve (EV).

Per the altitude element, we now understand that a combustion process does not get fully completed at some instances, meaning that gasoline is not completely consumed because of oxygen reduction in high altitude atmospheres. This factor is considered liable for some of negative effects on the car engine mechanism including the evident gradual engine power loss, fuel over waste, and discharge of pollution fumes. In addition to the above setbacks, significant gasoline debris fractions, which are not completely burned at the combustion process, usually end up spraying the cylinder inner walls and afterwards they drop onto the engine oil pan thus affecting the oil viscosity by progressively diluting and liquefying engine oil, and this condition gets worse as the run kilometers get behind.

A distinctive sign of such incomplete combustion event inside a vehicle engine is the sudden appearance of black smut deposits on the spark plugs. That in contrast with the solid brownish color displayed on healthy spark plug sets when good combustion is occurring.

The motor oil contamination caused by such fuel excess debris has shown to not only affect the lubrication process itself , but also to impact the engine oil amounts whose levels rapidly decrease after the initial 3,500 km run.

Therefore, by installing an altitude compensator device which is really an air induction ecological valve, the actual engine oil consumption will be reduced by 40% because the EV will automatically help maintain proper air-fuel mixture and protect oil viscosity as a plus.

In addition to that, the premature engine wear process can be stopped by optimizing good lubrication conditions so that a longer engine performance will be guaranteed before the motor could undertake a premature and expensive mechanic repair session.

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