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MAFless Tuning: Difference between revisions

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By changing the engine from MAF mode to MAFless/MAP mode, vehicle modifiers claim two advantages:
By changing the engine from MAF mode to MAFless/MAP mode, vehicle modifiers claim two advantages:
* The MAF may pose a physical restriction across the vehicle's intake tract, thereby reducing airflow into the engine. By removing the MAF this restriction is eliminated, potentially improving engine performance.
* The MAF may pose a physical restriction across the vehicle's intake tract, thereby reducing airflow into the engine. By removing the MAF this restriction is eliminated, potentially improving engine performance.
* By moving the airflow measurement sensor from the intake plumbing to a point closer to the cylinders, the time lag from air moving past the sensor to the computer calculating fuel requirements can be reduced, thereby improving throttle response.
* By moving the airflow measurement sensor from the intake plumbing to a point closer to the cylinders, the time lag from air moving past the sensor to reaching the cylinder can be reduced, thereby improving throttle response.


== Disadvantages ==
== Disadvantages ==

Revision as of 15:28, 11 November 2005

MAFless tuning is a method of operating the fuel injection system on a gasoline-powered motor vehicle whereby the mass airflow meter, or MAF, is removed.

The MAF

MAF fitted to a GM LS1 engine in a VZ Holden Commodore - a wire mesh screen is normally installed across the front of the MAF to smooth airflow across the wire elements - this has been removed in this photograph to show the wires

The MAF is a component in a vehicle's intake system through which air flows past a wire that is heated by an electical current. The airflow cools the wire, enabling the MAF to calculate the volume of airflow into the engine. The vehicle's engine management computer then uses this information to calculate the correct amount of fuel to be delivered to the cylinders by the fuel injection system.

Removing the MAF

When tuning a MAF-equipped vehicle to operate in MAFless mode, the MAF is removed. This requires the use of an alternative method of calculating airflow into the engine. On vehicles so equipped, this alternative involves the use of a manifold absolute pressure, or MAP, sensor. The MAP sensor measures pressure in the engine's inlet manifold. When coupled with data regarding the engine's revolutions per minute, or RPM, and throttle position, the MAP sensor can be used by the engine management computer to calculate fuel requirements.

Advantages

By changing the engine from MAF mode to MAFless/MAP mode, vehicle modifiers claim two advantages:

  • The MAF may pose a physical restriction across the vehicle's intake tract, thereby reducing airflow into the engine. By removing the MAF this restriction is eliminated, potentially improving engine performance.
  • By moving the airflow measurement sensor from the intake plumbing to a point closer to the cylinders, the time lag from air moving past the sensor to reaching the cylinder can be reduced, thereby improving throttle response.

Disadvantages

A potential disadvantage of converting an engine from MAF to MAFless mode is that where the MAP sensor is used to measure airflow, the corresponding fuel calculations must be performed by the computer based on tables of information programmed by the engine tuner. If other parts of the engine are subsequently modified with an effect on airflow through the engine, these fuel tables must be adjusted to match the revised engine hardware. By contrast, when operating in MAF mode the computer can automatically adjust its fuel delivery based on the airflow data generated by the MAF, even if other engine hardware is changed.

Applications

MAFless tuning is a popular modification in Australia for Holden vehicles powered by the General Motors LS1 Gen III 5.7 V8 engine. The genesis for MAFless tuning of the LS1 in Australia was the HSV GTS version of the Holden Commodore, which was factory fitted with a Callaway-developed C4B version of that engine running in MAFless mode. Rated at 300kW, the C4B was the most powerful factory LS1 sold in Australia and created substantial credibility for MAFless tuning of LS1 V8s.

However, tuners of the LS1 in North America tend to prefer retaining the MAF, instead overcoming intake tract restrictions by installing a MAF with a larger diameter body.