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Assessment of Transition Models in Predicting Skin Frictions and Flow Field of a Full-Scale Tilt Rotor in Hover

机译:悬停全尺寸倾斜转子的蒙皮摩擦和流场预测中的过渡模型评估

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Two transition modeling methods are assessed for predicting the skin frictions and flow field of a full-scale, hovering XV-15 tiltrotor using an unsteady Reynolds-averaged Navier-Stokes (RANS) flow solver. The rotor Figure of Merit (FM) is predicted over a range of collective pitch angles at two tip Mach numbers: a design tip Mach number of 0.69 and a reduced tip Mach number of 0.56. Computed skin frictions are compared with the measured data at selected collective pitch angles of 3°, 10°, 14° and 16.6°. The Langtry-Menter γ-Re_(θt) transition model is integrated into Spalart-Allmaras's one-equation turbulence model (SA-TM) as well as Menter's shear stress transport two-equation turbulence model (SST-TM). Both SA-TM and SST-TM transition models are assessed for predicting the laminar separation-induced transition and the mid-chord flow separation phenomena on the XV-15 rotor. A method to correct premature flow separation is introduced to improve the model's behavior in predicting the hover performance and flow field for the XV-15 rotor at high thrust levels. Predicted skin frictions and hover performance show strong conformity with the wind tunnel measurements.
机译:对两种过渡建模方法进行了评估,以使用非稳态雷诺平均Navier-Stokes(RANS)流量求解器来预测全尺寸悬停的XV-15倾转旋翼的蒙皮摩擦和流场。转子的品质因数(FM)在两个叶尖马赫数的集合螺距角范围内进行预测:设计叶尖马赫数为0.69,减小叶尖马赫数为0.56。将计算出的皮肤摩擦力与选定的3°,10°,14°和16.6°的总体俯仰角下的测量数据进行比较。 Langtry-Menterγ-Re_(θt)过渡模型已集成到Spalart-Allmaras的一方程湍流模型(SA-TM)和Menter的切应力传递两方程湍流模型(SST-TM)中。对SA-TM和SST-TM过渡模型都进行了评估,以预测XV-15转子上的层流分离引起的过渡和中弦流分离现象。引入了一种纠正过早流分离的方法,以改善模型在预测XV-15转子在高推力水平下的悬停性能和流场时的性能。预计的皮肤摩擦和悬停性能显示出与风洞测量的强烈一致性。

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