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  • Breakdown dynamics and instability of underwater metallic aerosol . . .
    This study delves into the electrophysical processes and intricate fluid dynamics of an electrical-explosion-induced bubble in water A fine copper wire is heated up and exploded to dense metallic aerosol (vapor–drop mixture) via a μs-timescale 10 kA current pulse, crossing a wide range of the density–temperature parametric space
  • Facile and environmentally-friendly fabrication of underwater . . .
    Therefore, it is significant to find a strategy that can not only control the underwater bubble wettability of the metallic surfaces but also avoid using low-surface-energy reagents In this work, we developed a facile and environmentally-friendly method to fabricate underwater superaerophobic and superaerophilic surfaces on aluminum, H59 brass
  • Long-term stability of aerophilic metallic surfaces underwater
    Aerophilic surfaces immersed underwater trap films of air known as plastrons Prado, L H et al Long-term stability of aerophilic metallic surfaces underwater Nat Mater 22, 1548 –1555
  • Bubble Theory and its Applications in Underwater Explosion, Marine . . .
    Bubbles play crucial roles in various fields, including naval and ocean engineering, chemical engineering, and biochemical engineering Numerous theoretical analyses, numerical simulations, and experimental studies have been conducted to reveal the mysteries of bubble motion and its mechanisms These efforts have significantly advanced research in bubble dynamics, where theoretical study is an
  • Abyss Aerosols: Drop Production from Underwater Bubble Collisions
    Figure 1 Relation between submicron drop production rate and airflow rate used to produce bubbles through a needle (a) Number of submicron drops produced per bubble , from a range of airflow rates and corresponding bubble size (see details in Supplemental Material []) Red hollow squares represent for different flow rates, corresponding to the red left axis
  • Underwater Superaerophobic and Superaerophilic Nanoneedles‐Structured . . .
    The trapped water layer is tightly attracted by the rough mesh and is hard to be replaced by the foreign gas bubble In fact, the underwater bubble sits on the mesh surface and can only contact with the peaks of the microstructures 42, 43 The bubble is surrounded by water, so it still retains a sphere shape on the rough mesh, yielding
  • Why does air underwater look metallic? : r askscience - Reddit
    So any part of the surface of a bubble that is at more than 50° with respect to the direction you're looking at it from will look completely reflective, like the surface of a mirror Also, even those rays at less than 50° still get partially reflected, even more so as they near 50°
  • Response of thin walled metallic structures to underwater explosion: A . . .
    The paper reviews some salient research works on load characterization and structural response of thin walled metallic structures subjected to Underwater Explosion (UNDEX), while highlighting the critical gaps and scope for further research work Underwater explosive bubble interaction with an adjacent submerged structure J Fluids Struct
  • Breakdown dynamics and instability of underwater metallic aerosol . . .
    This study delves into the electrophysical processes and intricate fluid dynamics of an electrical-explosion-induced bubble in water A fine copper wire is heated up and exploded to dense metallic
  • Study on the jetting characteristics of an underwater explosion bubble . . .
    The results reveal that a bubble produces two jet patterns for close stand-off distances (from γ D = 0 800 to γ D = 1 336 ⁠) and attack angles of 0 ° ⁠, 45 ° ⁠, 75 ° ⁠, and 90 ° ⁠ The first bubble jet results in an annular splitting of the bubble, while the second jet is pointed toward the floating body





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