Difference between revisions of "Oil"

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(→‎Dry Sump: added dry sump schematic)
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===[[File:Wet sump.PNG|right|middle|thumb|Wet Sump Schematic]]===
 
===[[File:Wet sump.PNG|right|middle|thumb|Wet Sump Schematic]]===
 
===banking in engines===
 
===banking in engines===
 +
[[File:Oil system.PNG|right|middle|thumb|Oil System Differences]]
 
In a stock motorcycle engine, the oil is stored in the oil pan as an internal oil pan. This is called a “wet sump” oil system. On a motorcycle, this works during hard lateral turns because the motorcycle itself leans into the turn, allowing the oil pickup to remain submerged during the turn. In a four wheeled vehicle, the engine cannot tilt into the turn, and the oil is forced against the side of the pan.
 
In a stock motorcycle engine, the oil is stored in the oil pan as an internal oil pan. This is called a “wet sump” oil system. On a motorcycle, this works during hard lateral turns because the motorcycle itself leans into the turn, allowing the oil pickup to remain submerged during the turn. In a four wheeled vehicle, the engine cannot tilt into the turn, and the oil is forced against the side of the pan.
  
 
[[File:Oil system.PNG|left|middle|thumb|Oil System Differences]]
 
 
===Accumulator===
 
===Accumulator===
  

Revision as of 10:46, 16 May 2020

Engine idk how to make this a child of engine, smh

Basic Purpose of Oil

System design

Wet Sump

Wet Sump Schematic

banking in engines

Oil System Differences

In a stock motorcycle engine, the oil is stored in the oil pan as an internal oil pan. This is called a “wet sump” oil system. On a motorcycle, this works during hard lateral turns because the motorcycle itself leans into the turn, allowing the oil pickup to remain submerged during the turn. In a four wheeled vehicle, the engine cannot tilt into the turn, and the oil is forced against the side of the pan.

Accumulator

Dry Sump

Dry Sump Schematic


In a dry sump oil system, the oil for the engine is stored in an external reservoir. The oil that collects at the bottom of the engine is quickly removed by a scavenging pump, and routed into the external reservoir from which the supplies for the engine and the turbocharger are drawn. A common industry solution, a dry sump is often used in very high performance engines for a variety of reasons, including reducing the load on the engine by pumping the oil electrically, or reducing the frictional work the engine has to overcome by reducing windage. A dry sump is common in FSAE for forced induction applications as high lateral accelerations reached in the FSAE competition greatly increase the chances of temporary oil starvation of the turbocharger[1].

Oiling for Turbochargers

The engine has a robust internal oil management and supply system, so a brief or inconsistent oil supply will have limited consequences for the engine itself. However, the turbocharger is spinning at well over 200,000 rpm, meaning even a small perturbation in oil supply will spell disaster for the bearing system. [citation needed, our source this in our senior proj was alumni communications]