CFD/CSD Coupling for an Isolated Rotor Using preCICE

Qunsheng Huang, Amine Abdelmoula, Gerasimos Chourdakis, J. Rauleder, B. Uekermann
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引用次数: 2

Abstract

. Modeling a rotor blade flow field involves computing the blade motion, elastic deformation, and the three-dimensional forces and moments for specific trim conditions. Such a complex multi-physics problem, which includes a strong fluid-structure interaction, should be modeled by coupling separate solvers which are specialized on solving single-physics problems. In this work, we present a modular and extensible TAU-CAMRAD II coupling environment using the preCICE coupling library [1]. In this coupling, the aerodynamic forces and moments were computed with the CFD solver TAU. The blade control angle for the CFD simulation were determined by the CSD solver CAMRAD II. We vali-dated the implementation using a modified model of the HART-II rotor at an advancing ratio of µ =0.3. Besides the potential that this work unlocks for future simulations of an active rotor, it also serves as an example of using preCICE for geometric multi-scale (1D-3D) coupling of closed-source solvers for periodic phenomena.
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基于preCICE的隔离转子CFD/CSD耦合
. 旋翼叶片流场建模包括计算叶片运动、弹性变形以及特定修剪条件下的三维力和力矩。这种复杂的多物理场问题,包括强流固相互作用,应该通过耦合专门解决单一物理场问题的独立求解器来建模。在这项工作中,我们使用preCICE耦合库[1]提出了一个模块化和可扩展的TAU-CAMRAD II耦合环境。在这种耦合中,用CFD求解器TAU计算了气动力和力矩。CFD仿真的叶片控制角由CSD求解器CAMRAD II确定。我们使用改进的HART-II转子模型,以µ=0.3的推进比验证了该实现。除了这项工作为主动转子的未来模拟解锁的潜力之外,它还可以作为使用preCICE进行周期性现象的闭源求解器的几何多尺度(1D-3D)耦合的一个例子。
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