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Numerical investigation of a novel device for bubble generation to reduce ship drag

机译:新型气泡产生装置减小船舶阻力的数值研究

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For a sailing ship, the frictional resistance exerted on the hull of ship is due to viscous effect of the fluid flow, which is proportional to the wetted area of the hull and moving speed of ship. This resistance can be reduced through air bubble lubrication to the hull. The traditional way of introducing air to the wetted hull consumes extra energy to retain stability of air layer or bubbles. It leads to lower reduction rate of the net frictional resistance. In the present paper, a novel air bubble lubrication technique proposed by Kumagai et?al. (2014), the Winged Air Induction Pipe (WAIP) device with opening hole on the upper surface of the hydrofoil is numerically investigated. This device is able to naturally introduce air to be sandwiched between the wetted hull and water. Propulsion system efficiency can be therefore increased by employing the WAIP device to reduce frictional drag. In order to maximize the device performance and explore the underlying physics, parametric study is carried out numerically. Effects of submerged depth of the hydrofoil and properties of the opening holes on the upper surface of the hydrofoil are investigated. The results show that more holes are favourable to reduce frictional drag. 62.85% can be achieved by applying 4 number of holes.
机译:对于帆船而言,施加在船体上的摩擦阻力是由于流体流动的粘性作用所致,该粘滞效应与船体的湿润面积和船的移动速度成正比。可以通过对船体进行气泡润滑来减小这种阻力。将空气引入湿润船体的传统方式会消耗额外的能量,以保持空气层或气泡的稳定性。这导致较低的净摩擦阻力降低率。在本文中,Kumagai等人提出了一种新颖的气泡润滑技术。 (2014年),对翼型上翼有开孔的翼形进气管(WAIP)装置进行了数值研究。该装置能够自然地引入要夹在湿润的船体和水之间的空气。因此,通过使用WAIP装置来减少摩擦阻力,可以提高推进系统的效率。为了最大程度地发挥设备性能并探索基本的物理原理,对参数进行了数值研究。研究了水翼的浸没深度和水翼上表面的开孔特性的影响。结果表明,更多的孔有利于减小摩擦阻力。通过应用4个孔可以达到62.85%。

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