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首页> 外文期刊>Journal of the American Helicopter Society >Stability, Consistency and Convergence of Time-Marching Free-Vortex Rotor Wake Algorithms
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Stability, Consistency and Convergence of Time-Marching Free-Vortex Rotor Wake Algorithms

机译:时间行进的自由涡旋转子唤醒算法的稳定性,一致性和收敛性

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摘要

The stability, accuracy and convergence of time-marching algorithms for free-vortex rotor wake calculations was examined. A linearized analysis was used to determine the basic stability characteristics. The vortex-induced velocities were calculated through application of the Biot-Savart law using standard straight-line vortex segmentation. This approach was shown to be second-order accurate. However, the discretization resulted in nonlinear dispersion and dissipation terms in the discretized wake equations. These errors were found to be dependent on the induced velocity field, and may be anti-dissipative under many flight conditions. In such cases, the wake geometry solution may not be convergent, even though the numerical algorithm is linearly stable.
机译:研究了用于自由涡旋转子尾流计算的时间前进算法的稳定性,准确性和收敛性。线性分析用于确定基本稳定性特征。通过应用标准直线涡旋分割法,通过应用Biot-Savart定律来计算涡旋诱导的速度。该方法被证明是二阶准确的。但是,离散化导致离散化的唤醒方程中存在非线性色散和耗散项。发现这些误差取决于感应的速度场,并且在许多飞行条件下可能是消散的。在这种情况下,即使数值算法是线性稳定的,尾流几何解也可能不会收敛。

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