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IMPROVED HIERARCHICAL MODELLING FOR AERODYNAMICALLY COUPLED SYSTEMS

机译:气动耦合系统的改进的层次建模

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Strong aerodynamic coupling can make the high fidelity simulation of a number of critical aero-engine components prohibitively expensive - particularly within the timeframes of industrial design cycles. This paper develops a body force based hierarchy of approaches to modelling the effects of blade rows. These are envisaged as allowing the computationally expensive parts of coupled systems to be resolved much more cheaply, rendering the cost of the overall simulation as more manageable. Simulation of the coupling that exists between the flow around an aero-engine intake and its fan is particularly emphasised, as this is becoming stronger and more performance critical with the modern trends towards the reduction of the relative diffuser length. The use of the viscous smeared geometry level of fidelity is initially shown to be an effective model over a number of cases - a simple compressor blade row, a modern high bypass fan, and the Darmstadt rotor. After this, it is shown working as part of a coupled system in an intake experiencing cross-flow. Higher fidelity geometry representations are then considered, which mimic the effect of struts. Finally, a mix of various fidelity geometry representations and turbulence modelling approaches is shown to bring otherwise hugely expensive calculations within the realm of practical computation, in the form of a full fan-to-flap calculation.
机译:强大的空气动力学耦合能力使得对许多关键航空发动机组件进行高保真度仿真的成本过高,尤其是在工业设计周期的时间范围内。本文开发了一种基于体力的方法层次结构,以对叶片行的影响进行建模。可以设想,这些方法可以使耦合系统的计算昂贵的部分得以更廉价地解决,从而使整体仿真的成本更易于管理。尤其要强调对航空发动机进气口周围的气流与其风扇之间存在的耦合的仿真,因为随着现代趋势,即相对扩散器长度的减小,这种耦合变得越来越强大,并且对性能的要求越来越高。最初,在许多情况下,使用粘性涂抹几何图形保真度级别是一种有效的模型-简单的压缩机叶片列,现代的高旁通风扇和Darmstadt转子。此后,它被显示为在遇到横流的进气口中作为耦合系统的一部分工作。然后考虑更高保真度的几何图形表示,它可以模拟支杆的效果。最后,显示了各种保真度几何表示法和湍流建模方法的混合,以完整的扇到扇计算形式将原本非常昂贵的计算带入了实际计算领域。

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