Everything about Dry Sump totally explained
A
dry sump is a lubricating oil management method for
four-stroke and large
two-stroke piston
internal combustion engines that uses a secondary external reservoir for oil, as compared to a conventional
wet sump system.
Four-stroke engines are lubricated by oil which is pumped into various
bearings and thereafter allowed to drain to the base of the engine. In most production cars, which use a wet sump system, this oil is simply collected in a three to seven litre capacity pan at the base of the engine, known as the
oil pan, where it's pumped back up to the bearings by the
oil pump, internal to the engine. In a dry sump, the oil still falls to the base of the engine, but rather than being collected into an oil pan, it's pumped into another reservoir by one or more
scavenger pumps, run by belts from the front or back of the
crankshaft. Oil is then pumped from this reservoir to the
bearings of the engine by the pressure pump. Typical dry sump systems have the pressure pump and scavenger pumps "stacked up", so that one pulley at the front of the system can run as many pumps as desired, just by adding another to the back of the stack.
A dry sump affords many advantages, namely increased oil capacity, decreased
parasitic loss and a lower
center of gravity for the engine. Because the reservoir is external, the oil pan can be much smaller in a dry sump system, allowing the engine to be placed lower in the vehicle; in addition, the external reservoir can be as large as desired, whereas a larger oil pan raises the engine even further. Increased oil capacity by using a larger external reservoir leads to cooler oil. Furthermore, dry sump designs are not susceptible to the oil starvation problems
wet sump systems suffer from if the oil sloshes in the oil pan, temporarily uncovering the oil pump pickup tube. Having the pumps external to the engine allows them to be maintained or replaced more easily, as well.
Dry sumps are common on larger
diesel engines such as those used for ship propulsion. Many
race cars,
supercars, and
aerobatic aircraft also utilize dry-sump equipped engines because they prevent oil-starvation at high
g loads and because their lower center of gravity positively affects performance.
On the downside, dry sump systems add cost and complexity, and the extra pumps and lines require more oil, so maintenance costs go up as well.
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