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首页> 外文期刊>Engineering Applications of Computational Fluid Mechanics >Numerical simulation for the differences between FTN/WPN engine models aerodynamic influence on BWB300 airframe
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Numerical simulation for the differences between FTN/WPN engine models aerodynamic influence on BWB300 airframe

机译:FTN / WPN发动机模型在BWB300机身上的空气动力学影响的差异数值模拟

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The difference of the aerodynamic influence of two engine models – the Flow Through Nacelle (FTN) and With Powered Nacelle (WPN) – on BWB300 airframe is analyzed by using the 3-D unsteady compressible Reynolds-Averaged Navier-Stokes (RANS) computation. The results indicate that at cruise condition, the engine shape is a primary factor affecting the BWB airframe upper fuselage surface flow, the two engine models exhibit a similar aerodynamic influence on the BWB airframe. However, at takeoff condition, the two engine models’ aerodynamic influence on the airframe is different, because of the air suction caused by the WPN engine model affecting the airframe upper fuselage surface flow obviously. Moreover, at both cruise and takeoff conditions, the tube formed by the engine and airframe shape changes the surface flow under the engine and the air suction caused by the engine power accelerates the surface flow near the engine.
机译:通过使用3-D不稳定的可压缩雷诺瓦德 - 平均的Navier-Stokes(RANS)计算,分析了两个发动机模型的空气动力学影响 - 通过机舱(FTN)和动力机舱(WPN) - 在BWB300机身上进行了差异。结果表明,在巡航条件下,发动机形状是影响BWB机身上机动表面流动的主要因素,两个发动机模型对BWB机身上表现出类似的空气动力学影响。然而,在起飞条件下,两个发动机模型对机身的空气动力学影响是不同的,因为由WPN发动机模型的空气抽吸显然影响机身上面的机身。此外,在巡航和起飞条件下,由发动机和机身形状形成的管改变发动机下方的表面流量,并且由发动机功率引起的空气抽吸加速了发动机附近的表面流动。

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