Author:
Wang Jiadao,Wang Bao,Chen Darong
Abstract
Abstract
Publications on underwater drag reduction by gas have been gathered in the present study. Experimental methods, results and conclusions from the publications have been discussed and analyzed. The stable existence of gas is a requirement for underwater drag reduction induced by slippage at the water-solid interface. A superhydrophobic surface can entrap gas in surface structures at the water-solid interface. However, many experimental results have exhibited that the entrapped gas can disappear, and the drag gradually increases until the loss of drag reduction with immersion time and underwater flow. Although some other surface structures were also experimented to hold the entrapped gas, from the analysis of thermodynamics and mechanics, it is difficult to prohibit the removal of entrapped gas in underwater surface structures. Therefore, it is essential to replenish a new gas supply for continued presence of gas at the interface for continued underwater drag reduction. Active gas supplement is an effective method for underwater drag reduction, however, that needs some specific equipment and additional energy to generate gas, which limits its practical application. Cavitation or supercavitation is a method for passive gas generation, but it is only adaptive to certain vehicles with high speed. Lately, even at low speed, the evaporation induced by liquid-gas-solid interface of a transverse microgrooved surface for continued gas supply has been discovered, which should be a promising method for practical application of underwater drag reduction by gas.
Publisher
Springer Science and Business Media LLC
Subject
Surfaces, Coatings and Films,Mechanical Engineering
Reference111 articles.
1. Shi X H, Wang X J. Introduction to Underwater Weapon (Torpedo). Xi’an: Northwestern Polytechnical University Press, 1995: 28–33.
2. Ke G X, Pan G, Huang Q G, Hu H B, Liu Z Y. Review of underwater drag reduction technology. Adv Mech39: 546–554 (2009)
3. Jiang C G, Xin S C, Wu C W. Drag reduction of a miniature boat with superhydrophobic grille bottom. AIP Adv1: 032148 (2011)
4. Zhang D Y, Li Y Y, Han X, Li X, Chen H W. High-precision bio-replication of synthetic drag reduction shark skin. Chinese Sci Bull56: 938–944 (2011)
5. Wang B, Wang J D, Zhou G, Chen D R. Drag reduction by micro vortexes in transverse microgrooves. Adv Mech Eng2014: 734012 (2014)
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