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- W3184455127 abstract "The present research investigates the shock wave strength in water generated by laser irradiation through a shock driver. A flat glass coated with thin metal plate is considered as shock driver, which is kept at the top surface of water for shock simulation. Here, five different thin metals have been used as coat of shock driver such as titanium (Ti), nickel (Ni), gold (Au), aluminum (Al) and silver (Ag). By the laser irradiation, a thermo-elastic expansion arise into the metallic plate of shock driver very promptly and, consequently a longitudinal wave propagates through the metal with very high amplitude in very short time. The longitudinal wave carries the momentum and energy from laser and as a result, a shock wave propagates into water. The finite difference method is applied for shock simulation in water using the conservative form of Euler equations of motion. In the simulation, the laser induced force is used as boundary condition, which arise from the shock driver, and calculated from the thermo-elastic wave equations. Finally, among the all metals, the numerical simulation shows that the strongest shock wave is originated by titanium metal." @default.
- W3184455127 created "2021-08-02" @default.
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- W3184455127 date "2021-01-01" @default.
- W3184455127 modified "2023-09-23" @default.
- W3184455127 title "Numerical Simulation of Shock Wave in Water by the Laser Induced Force" @default.
- W3184455127 hasPublicationYear "2021" @default.
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