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Markey
Theme: System (currently light)

Test Drive

Citroën 2CV

An instrumented readout computed from this car's published specifications.Figures are for the Type A (375 cc).

0–100 km/h

— s

modelled

No published figure to compare against.

Top speed

69 km/h

modelled

64 km/h

published

Model is 8% higher

Braking 100–0

60.5 m

modelled

Tyre-limited ideal. Ignores fade and assumes peak grip throughout. A floor, not a test result.

Power to weight

11 kW/t

at kerb weight

Acceleration

Speed against time, integrated forward: traction-limited off the line, then power-limited.

5038251300.0s13.1s26.1s

Power required against speed

Where the curve meets the flat line is the top speed. Drag rises with the cube of speed, which is why the last 20 km/h cost more than the first 100.

26191360060120

Dashed line: 6 kW at the wheels, after drivetrain losses. Horizontal axis in km/h.

Holding a steady speed

Power at the wheels
25.6 kW
Spent on drag
91%
Steady-state use
9.5 L/100 km

A constant speed on level ground, not a drive cycle. Not comparable with a WLTP or EPA figure.

Below about 38 km/h rolling resistance dominates; above it, drag does.

Aerodynamic drag

Cd 0.51 × 2.01 m² = CdA 1.027 m². Frontal area estimated.

3032151600125250

Newtons against km/h.

Estimated as 0.85 × width × height = 0.85 × 1.480 m × 1.600 m ≈ 2.01 m². Not a measured figure.

Every figure on this page is modelled, not measured. The formulae and every default constant are published on the methodology page, including where the model is weakest: it knows nothing about gearing, so a car that runs out of gears before it runs out of power will model faster than it really is.

How these figures are calculated →