File:Coriolis meter rotating flow 512x512.gif

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Coriolis_meter_rotating_flow_512x512.gif(512 × 512 pixels, file size: 157 KB, MIME type: image/gif, looped, 30 frames, 3.0 s)

Summary

Description

Description:
Illustration for the mass flow meter article, for the purpose of illustrating the mass flow meter operating principle; actual mass flow meters are not designed this way.
This is the second animation of a group of four.
The previous animation is Image:Coriolis_meter_rotating_no-flow_512x512.gif
The next animation is Image:Coriolis_meter_vibrating_no-flow_512x512.gif Fluid is being pumped through the mass flow meter. When there is mass flow, the tube twists slightly. The arm through which fluid flows away from the axis of rotation must exert a force on the fluid, to increase its angular momentum, so that are bends backwards. The arm though which fluid is pushed back to the axis of rotation must exert a force on the fluid, to decrease the fluid's angular momentum again, hence that arm will bend forward. Summerizing: the inlet arm is lagging behind, the outlet arm is pulling ahead. A flow meter that uses the Coriolis effect for its operating principle is also called a Coriolis flow meter. Smaller (256x256 pixels) version of this animation: Image:Coriolis_meter_rotating_flow_256x256.gif Created:
2 february 2007

Author: Cleonis
Date 4 February 2007 (original upload date)
Source No machine-readable source provided. Own work assumed (based on copyright claims).
Author No machine-readable author provided. Cleontuni assumed (based on copyright claims).

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4 February 2007

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dd4dea7d0ca3e18e433f0aad11bd9a9844c8f797

160,802 byte

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Date/TimeThumbnailDimensionsUserComment
current22:31, 16 February 2007Thumbnail for version as of 22:31, 16 February 2007512 × 512 (157 KB)CleontuniCorrected version
02:05, 4 February 2007Thumbnail for version as of 02:05, 4 February 2007512 × 512 (135 KB)Cleontuni'''Description:'''<br> Illustration for the mass flow meter article, for the purpose of illustrating the mass flow meter operating principle; actual mass flow meters are not designed this way. <br/> This is the second animation of a group of four. <br
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