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Energy Conservation Method Combining Anti spray Rail and Wedge Flap for High speed Displacement Hulls

机译:抗喷涂轨和楔形挡板的节能方法,高速位移壳

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摘要

The hydrodynamic mechanism and parametric influences of the wedge flap and the anti-spray rail in combination is investigates. A methodology with specific guidelines for incorporating these appendages with significant drag reduction is provided. Small crafts designs frequently require interventional changes to realise the desired guaranteed speed with their installed engine power. The appendages namely, the wedge, flap and anti-spray rails are used as retrofit measures or adapted in new hull forms, in isolation or in combination, to improve the drag and bring down the power requirement. A judicious combination of different appendages can result in significantly reduced drag and therefore power saving. The methodology combines the results of numerical and experimental investigations. The systematic study identifies the parameters for control namely, wedge flap size in terms of the chord length, its orientation vide the angle of the wedge flap, and the anti-spray rail location with respect to the water surface. The choice of the size of the wedge flap is a constrained problem since excessive wedge flap can cause problems related to length and hydrodynamic loading. This study establishes a solution by combination of a minimum integrated wedge flap with properly located anti-spray rail to reduce the drag. The study shows favourable influences due to local pressure and numerical results using a RANSE solver show good comparison with experimental test results. The methodology is a new approach towards drag reduction in new designs as well as drag control by retrofit.
机译:研究了楔形翼片和抗喷射轨组合的流体动力学机理和参数影响。提供了具有掺入具有显着阻力减少的这些阑尾的具体指导方法的方法。小型工艺品经常需要介入的变化,以实现所需的发动机电源的所需保证速度。附属物即,楔形,襟翼和抗喷涂导轨用作改造措施或以新的船体形式,分离或组合调整,以改善拖动并降低电源要求。不同附属物的明智组合可能导致拖拉显着减少,因此省电。该方法结合了数值和实验研究的结果。系统研究识别控制的参数,即楔形长度的楔形翼片尺寸,其取向导向楔形翼片的角度以及相对于水面的抗喷射轨道位置。楔形翼片尺寸的选择是受限制的问题,因为过量的楔形挡板可能导致与长度和流体动力负载相关的问题。本研究采用最小集成楔形襟翼建立了一个抗喷射轨以减少拖曳的液体。该研究表明,由于局部压力和使用RANSE求解器的数值结果表明了有利的影响,并使用实验测试结果显示出良好的比较。该方法是一种新的方法,用于减少新设计的减少以及通过改装阻力控制。

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