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Numerical modelling of the aerodynamic interference between helicopter and ground obstacles

机译:直升机与地面障碍物之间空气动力干扰的数值模拟

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摘要

Helicopters are frequently operating in confined areas where the complex flow fields that develop in windy conditions may result in dangerous situations. Tools to analyse the interaction between rotorcraft wakes and ground obstacles are therefore essential. This work, carried out within the activity of the GARTEUR Action Group 22 on "Forces on Obstacles in Rotor Wake", attempts to assess numerical models for this problem. In particular, a helicopter operating in hover above a building as well as in its wake, one main rotor diameter above the ground, has been analysed. Recent tests conducted at Politecnico di Milano provide a basis for comparison with unsteady simulations performed, with and without wind. The helicopter rotor has been modelled using steady and unsteady actuator disk methods, as well as with fully resolved blade simulations. The results identify the most efficient aerodynamic model that captures the wakes interaction, so that real-time coupled simulations can be made possible. Previous studies have already proved that the wake superposition technique cannot guarantee accurate results if the helicopter is close to the obstacle. The validity of that conclusion has been further investigated in this work to determine the minimum distance between helicopter and building at which minimal wake interference occurs.
机译:直升机经常在狭窄的区域内操作,在有风的条件下发展的复杂流场可能会导致危险情况。因此,用于分析旋翼机尾流与地面障碍物之间相互作用的工具至关重要。这项工作是在GARTEUR行动小组22关于“转子尾流中的障碍物的力”的活动范围内进行的,试图评估此问题的数值模型。特别地,已经分析了在建筑物上方悬停时以及在其尾部时在地面上方一个主旋翼直径的直升机。最近在米兰理工大学进行的测试为比较有风和无风情况下进行的不稳定模拟提供了基础。直升机旋翼已经使用稳态和非稳态执行器盘方法以及完全解析的叶片模拟进行了建模。结果确定了捕捉尾流相互作用的最有效的空气动力学模型,从而可以进行实时耦合模拟。先前的研究已经证明,如果直升机靠近障碍物,尾波叠加技术不能保证准确的结果。在这项工作中,对该结论的有效性进行了进一步研究,以确定直升机与建筑物之间的最小距离,在该距离处发生最小的尾波干扰。

著录项

  • 来源
    《CEAS Aeronautical Journal》 |2017年第4期|589-611|共23页
  • 作者单位

    CFD Laboratory, School of Engineering, University of Glasgow, G12 8QQ Glasgow, UK;

    CFD Laboratory, School of Engineering, University of Glasgow, G12 8QQ Glasgow, UK;

    Dipartimento di Scienze e Tecnologie Aerospaziali, Politecnico di Milano, Milan, Italy;

    CFD Laboratory, School of Engineering, University of Glasgow, G12 8QQ Glasgow, UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rotors; Vortical flow; Ground obstacles; CFD;

    机译:转子涡流地面障碍物;差价合约;

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