Single-magnet rotary flowmeter for liquid metals
arXiv:1012.3965 · doi:10.1063/1.3610440
Abstract
We present a theory of single-magnet flowmeter for liquid metals and compare it with experimental results. The flowmeter consists of a freely rotating permanent magnet, which is magnetized perpendicularly to the axle it is mounted on. When such a magnet is placed close to a tube carrying liquid metal flow, it rotates so that the driving torque due to the eddy currents induced by the flow is balanced by the braking torque induced by the rotation itself. The equilibrium rotation rate, which varies directly with the flow velocity and inversely with the distance between the magnet and the layer, is affected neither by the electrical conductivity of the metal nor by the magnet strength. We obtain simple analytical solutions for the force and torque on slowly moving and rotating magnets due to eddy currents in a layer of infinite horizontal extent. The predicted equilibrium rotation rates qualitatively agree with the magnet rotation rate measured on a liquid sodium flow in stainless steel duct.
15 pages, 6 figures, revised version, to appear in J. Appl. Phys
References in corpus (5)
- Contactless inductive flow tomography
- Contactless Electromagnetic Phase-Shift Flowmeter for Liquid Metals
- The Theory of Heating of the Solar Corona and Launching of the Solar Wind by Alfvén Waves
- Azimuthal Magnetorotational Instability at low and high magnetic Prandtl numbers
- Nonmodal analysis of helical and azimuthal magnetorotational instabilities
Cited by in corpus (4)
- Contactless Electromagnetic Phase-Shift Flowmeter for Liquid Metals
- Concept of a next-generation electromagnetic phase-shift flowmeter for liquid metals
- Laminar and transitional liquid metal duct flow near a magnetic point dipole
- Alternative transient eddy-current flowmetering methods for liquid metals