Finite element simulations show that electrified liquid metal tips sharpen self-similarly across Reynolds numbers from 0.1 to 50,000, with blow-up exponents interpolating between the known Stokes and inviscid limits.
In par- ticular, given a liquid with fixed material constants, the restriction of fixed capillary number imposes the key con- straint that the ratio φ2/ho is a constant
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Electrified Cone Formation in Perfectly Conducting Viscous Liquids: Self-Similar Growth Irrespective of Reynolds Number
Finite element simulations show that electrified liquid metal tips sharpen self-similarly across Reynolds numbers from 0.1 to 50,000, with blow-up exponents interpolating between the known Stokes and inviscid limits.