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Aerodynamic Characteristics of Wing of WIG Catamaran vehicle During Ground Effect

机译:WIG双体船地面效应期间机翼的空气动力学特性

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In this paper, the aerodynamic characteristics of wing with NACA 6409 section from WIG Catamaran vehicles with the influence of twin hull and ground effect was numerically studied. The simulation of WIG Catamaran was performed by Three Dimensional (3D) Computational Fluid Dynamic (CFD). The k-co SST turbulent model was used for turbulent flow in CFD mode. In order to validate the numerical results, the CFD simulations of only wing with NACA 6409 section were compared with experimental data published by previous researcher. Next, Lift coefficient and, drag coefficient and lift to drag ratio of wing with twin hulls of WIG catamaran were determined on various of angle of attacks and two ground clearances (h/c=0.3 and infinity). The results of the CFD simulation indicate a reduction on lift and drag coefficients but there is an increment lift to drag ratio of wing which is caused by twin hulls of WIG Catamaran, as well as there are enhancement on lift coefficient and decreasing on drag coefficient, hence lift to drag ratio increases when flying in proximity to the ground.
机译:本文对WIG双体船的NACA 6409型截面机翼的气动特性进行了数值研究,研究了双壳和地面效应的影响。 WIG双体船的仿真是通过三维(3D)计算流体动力学(CFD)进行的。 k-co SST湍流模型用于CFD模式下的湍流。为了验证数值结果,将仅具有NACA 6409截面的机翼的CFD模拟与先前研究人员发布的实验数据进行了比较。接下来,在各种迎角和两个离地间隙(h / c = 0.3和无穷大)的基础上,确定了WIG双体船的双壳机翼的升力系数和阻力系数以及升力与阻力比。 CFD仿真结果表明,升力和阻力系数减小,但是机翼的双体WIG双体船导致机翼升力/阻力比增加,升力系数增加而阻力系数减小,因此,在地面附近飞行时,升阻比增加。

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