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<p>has zero divergence). It is a consequence of <a href="page.php?w=Helmholtz%27s_theorems">Helmholtz's theorems</a> (or equivalently, of <a href="page.php?w=Kelvin%27s_circulation_theorem">Kelvin's circulation theorem</a>) that in an inviscid fluid the 'strength' of the vortex tube is also constant with time. Viscous effects introduce frictional losses and time dependence.</p>

<p>In a three-dimensional flow, vorticity (as measured by the <a href="page.php?w=volume_integral">volume integral</a> of the square of its magnitude) can be intensified</p><p>
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