New Ferrari 12Cilindri - exclusive interior, V12 engine

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  • Опубликовано: 3 май 2024
  • 2025 Ferrari 12Cilindri - first look
    The Ferrari 12Cilindri boasts the very state of the art in front-engined berlinetta dynamic controls. The introduction of brake-by-wire allowed the latest innovations from the range to be adopted, including ABS Evo that debuted on the 296 GTB and the 6D sensor that guarantees optimal precision to the Virtual Short Wheelbase (PCV) 3.0 and Side Slip Control (SSC) 8.0 systems, together with reduced braking distances and a more accurate repeatability of braking. The Aspirated Torque Shaping, an entirely new control logic, also emphasises even further the smoothly linear power delivery from the legendary naturally-aspirated engine, thanks to electronic control.
    The SSC 8.0, a new evolution of the famous Ferrari control unit, allows the systems to talk to each other using a shared language that calculates the optimal operating mode for each one in order to maximise the car’s overall performance. The SSC 8.0 integrates the Ferrari 12Cilindri’s controllers and creates natural synergy with the new ABS Evo.
    The SSC 8.0 is Ferrari’s proprietary system and has been optimised to further improve estimation accuracy and learning speed (+10% compared to previous applications), as well as control on very low grip surfaces. Grip estimation is flanked by the contribution of the grip recognition logic: by using the information from the EPS CPU and the side-slip angle estimated by the SSC 8.0, the Ferrari 12Cilindri can estimate the tyre-road grip level even when steering. Thanks to this approach, the grip can also be estimated in normal use conditions and not just on the limit, making it faster for the system to learn real grip levels.
    The heat dissipation requirements of the engine and ancillaries demanded a redesign of the car’s entire cooling system which resulted in front underbody evacuation being optimised, with no fewer than seven openings in the front bumper. In particular, the space between the longitudinal elements of the chassis houses the engine coolant radiator and air-con circuit condenser, which are fed by the central opening, while the oil radiator has been split into two separate elements, lying ahead of the front wheels. The two side air intakes are divided in two: the outer part is designed to cool the engine oil radiator while the inner one cools the brakes.
    A generous brake cooling duct is fed by two openings, one between the radiator intakes and the other on the lower part of the front splitter. The entire system is integral to the oil radiator intake to optimise the routing of the front brake intakes. The side intakes are framed by an L-shaped element designed to maximise the amount of air entering the opening whilst simultaneously correctly channelling the flow along the car’s flanks.
    The main objective of the Ferrari 12Cilindri’s aerodynamics was to produce a sober, elegant car without compromising on performance. The 25 nm nolder on the boot lid and the active aero are the two signature elements of the tail section. The former guarantees the recompression required to maintain the car’s aero efficiency when drag is minimal while the flaps permit two different configurations, Low Drag (LD) and High Downforce (HD) respectively.
    In the low drag position, the flaps are flush with the bodywork so that the air runs over it uninterupted, making them invisible to the flow. This configuration is retained until a speed of 60 km when downforce is not very relevant to the performance of the car, something that is also the case over 300 km/h. In between these two speeds, however, downforce plays a central role and the spoilers’ movement depends on the car’s longitudinal and lateral acceleration. In high downforce configuration, the Ferrari 12Cilindri generates maximum downforce and guarantees that the car is aerodynamically balanced.
    Source: ferrari
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