Related Experiment Video
Updated: Feb 10, 2026

Determining and Controlling External Power Output During Regular Handrim Wheelchair Propulsion
Published on: February 5, 2020
Mechanical power output in rowing should not be determined from oar forces and oar motion alone
Mathijs J Hofmijster1,2, Lotte L Lintmeijer1, Peter J Beek1
1a Amsterdam Movement Science , Vrije Universiteit Amsterdam , Amsterdam , The Netherlands.
Abstract:
Mechanical power output is a key performance-determining variable in many cyclic sports. In rowing, instantaneous power output is commonly determined as the dot product of handle force moment and oar angular velocity. The aim of this study was to show that this commonly used proxy is theoretically flawed and to provide an indication of the magnitude of the error. To obtain a consistent dataset, simulations were performed using a previously proposed forward dynamical model. Inputs were previously recorded rower kinematics and horizontal oar angle, at 20 and 32 strokes∙min-1. From simulation outputs, true power output and power output according to the common proxy were calculated. The error when using the common proxy was quantified as the difference between the average power output according to the proxy and the true average power output (P̅residual), and as the ratio of this difference to the true average power output (ratiores./rower). At stroke rate 20, P̅residual was 27.4 W and ratiores./rower was 0.143; at stroke rate 32, P̅residual was 44.3 W and ratiores./rower was 0.142. Power output in rowing appears to be underestimated when calculated according to the common proxy. Simulations suggest this error to be at least 10% of the true power output.
Related Concept Videos
Work and Power for Rotational Motion
Similarly, the power delivered to a system that is rotating about a fixed axis...
Second Law: Motion under Same Force
Let's imagine a person is...
Central-Force Motion
Mechanism of Ciliary Motion
The cilia are made up of microtubules in a 9+2 arrangement, with nine microtubule doublet ring bundles, surrounding a pair of central singlet microtubule bundles. The doublet microtubule bundles are...
Power Expended by a Constant Force
Cell-matrix's Response to Mechanical Forces
Anchoring junctions mechanically attach a cell to the...

