Browse Publications Technical Papers 2000-01-0669
2000-03-06

Similarity Rules and Parametric Design of Race Engines 2000-01-0669

The paper compares 3.0 liter F1 engine solutions developed in compliance with the 1999 FIA Technical Regulations. A previous paper [28] presented a comparison of similar engines having 10 and 12 cylinders. Benefits of the 12 cylinders were clearly shown terms of pure engine performances. W12 engines made up of three banks of four cylinders are further investigated here. Similarity rules are presented first. These rules and non dimensional parameters from previous projects are then used to define geometric and operating parameters for “fully similar” engine solutions differing only in the bore/stroke ratio. Three different bore values are considered, B=89, 90 and 91 mm, thus producing bore/stroke ratios B/S=2.215, 2.290 and 2.367 respectively. These engine solutions are further refined by introducing variation of intake and exhaust pipe diameters and lengths and valve maximum lift and duration, thus producing “partly similar” engine solutions. Results are presented as computed classical engine outputs versus engine speed, including brake, indicated and friction values. While computed indicated values are fairly reliable, friction and therefore brake values are less accurate. Within these accuracy limits, engines with larger bores provide best car performances.

SAE MOBILUS

Subscribers can view annotate, and download all of SAE's content. Learn More »

Access SAE MOBILUS »

Members save up to 16% off list price.
Login to see discount.
Special Offer: Download multiple Technical Papers each year? TechSelect is a cost-effective subscription option to select and download 12-100 full-text Technical Papers per year. Find more information here.
We also recommend:
TECHNICAL PAPER

Parametric Design of FIA F1 Engines

2002-01-3315

View Details

TECHNICAL PAPER

Parametric Design of FIM WGP Engines

2002-01-3317

View Details

TECHNICAL PAPER

Numerical Optimization of a Racing Engine with Variable Intake and Exhaust Geometry and Valve Actuation

962542

View Details

X