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Impact
12024-02-06T21:30:27+00:00Julia Teran9aca9c408841ff28b321d7128a1e5c918a151e1d601Imagine the power and beauty of a steel sphere impacting the undisturbed surface of water at supersonic speeds. Take in the progression from surface to depth at three kilometers per second in less than a fifty-thousandth of a second. The artificially colored density gradients of the simulation accentuate the swirling dance of water and air as the surface rises up and the shock wave descends. What can an insignificant sphere teach us as we delve into the depths of high-speed water entry? This extreme struggle between steel and water is at the edge of the unknown, but could yield tantalizing insights into the damage a naval ship might experience from future high-speed projectiles. The study of a simple sphere could lead to lives being saved. Imagine the impact.2024-02-06T21:30:27+00:0005Joshua SmithCase Western Reserve UniversityJulia Teran9aca9c408841ff28b321d7128a1e5c918a151e1d
12024-02-02T20:22:30+00:00Daniela Solomone316041929e7cb3504341dbd1e9eb2f7bd821a142024 Case Western Reserve University SubmissionsDaniela Solomon7structured_gallery2024-03-19T17:58:24+00:00Daniela Solomone316041929e7cb3504341dbd1e9eb2f7bd821a14
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12024-02-06T15:12:10+00:00Daniela Solomone316041929e7cb3504341dbd1e9eb2f7bd821a14Case Western Reserve UniversityDaniela Solomon6gallery2024-03-19T15:38:38+00:00Daniela Solomone316041929e7cb3504341dbd1e9eb2f7bd821a14