Ola Werring

Mechanical engineering. Suspension design and vehicle testing. MEng, University of Bath. Formula Student and junior single-seater motorsport.

CURRENTLY: Designing a brake bedding inertia dynamometer at Van Amersfoort Racing, Zeewolde. Updated 2026-08-29.

Fig. 0.1   TBRe26 front corner, exploded
72%
pushrod mass reduction
1.482 kg → 0.419 kg
steel to CFRP, four pushrods
34 decisions
logged with rationale and reversal triggers

Case studies

ORDERED BY DEPTH OF WORK, NOT BY DATE.
The drive is dead through the stopA BEDDING STOPSCHEDULE REPEATSLIVEDRIVE DEADLIVEHUB SPEEDDRIVEBRAKENO CONTROLLER FAULT CAN BECOME A FIDELITY FAULT
P-02 · VAN AMERSFOORT RACING IN PROGRESS

Brake bedding inertia dynamometer

A single-corner inertia dynamometer that beds steel discs and pads off the car, to a controlled schedule rather than on track. Designed end to end: the fidelity argument, the sizing chain from the tyre up, instrumentation, controls and the safety case. Whether VAR build it is their decision; if they do, jointly with the test team.

CASE STUDY →
TBRe26 from behind at Formula Student Germany, rear wing and rear suspension in view, marker cones either side
P-01 · TEAM BATH RACING ELECTRIC

CFRP suspension pushrods

Steel to carbon across the car's four pushrods, 1.482 kg down to 0.419 kg. Bespoke load tooling, laminate FE carried against the test data, and a bonded joint sized for the load case rather than the catalogue.

Photo: Lodholz
CASE STUDY →
Isometric render of the ball launcher: shooting column on a pivot, gearbox case and base plate
P-04 · ME12001 DESIGN AND MAKE, UNIVERSITY OF BATH DESIGN COMPLETE / BUILD PENDING

Single-motor ball launcher

One 12 V motor drives firing, aiming and feeding. The aiming cam is carried on the body it controls, so the profile came out of kinematic inversion. My scope: the aiming mechanism, the cam profile and the gearbox, against an 85 pound component cap.

CASE STUDY →
The car in the pit lane at the end of the day, crew around it and empty grandstands behind
P-03 · MTECH COMPETITION / PORSCHE CARRERA CUP

Trackside engineering

Two race weekends with a professional Carrera Cup team, assisting on the tyre programme and watching it run: cold pressures to target, inner, middle and outer temperatures on the in-lap, bleed-down against ambient drift, allocation planned across the weekend. A field log of how a professional weekend runs, not a design project.

CASE STUDY →

Shorter works

Half-section render of the in-hub epicyclic gearbox showing the planetary set and bearings
S-01 · COURSEWORK

In-hub epicyclic gearbox

Ratio selection, bearing arrangement and tolerancing for a wheel-hub planetary reduction.

SHORT WORK →
The finished charging trolley in the team garage
S-02 · TEAM BATH RACING ELECTRIC

Charging trolley, design-to-stock build

Fixed footprint, built from what the lab held. An exercise in judging where drawing effort adds value.

SHORT WORK →

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