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Use of a Two-Dimensional Finite Volume Integral Boundary-Layer Method for Ice-Accretion Calculations

机译:二维有限体积积分边界层方法在冰积计算中的应用

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摘要

In this paper, a two-dimensional integral boundary-layer method developed in a recent work is applied to ice-accretion computations. The method has already been validated in terms of boundary-layer dynamic effects in another paper. It is here validated for its ability to capture ice shapes, once the method is included in an icing suite. To be more specific, the results in using the new boundary-layer method are compared to experimental ice shapes and simulated ones with the widely used simplified integral method. The validation is carried out at an aggregated level because icing databases generally provide access to final ice shapes only. However, because the simplified integral method is used in many icing numerical tools, this comparison makes it possible to investigate the benefits of introducing the new method for calculating the boundary layer. The main outcome of the new method is an improvement of the prediction of the boundary-layer prediction under a smooth-wall assumption, which in turn improves ice-shape prediction. It is shown that, overall, the ice shapes are indeed either better predicted with the new method than with the baseline approach, or equally predicted with both methods. In addition, because the heat transfer coefficient tends to be underestimated by simplified integral methods, the new approach tends to predict lower horn angles than the baseline approach. Finally, the consequences of these results on current and future developments of ice-accretion solvers are discussed. In particular, the new method is better suited to a three-dimensional extension than the simplified integral method.
机译:在本文中,将近期工作中开发的二维积分边界层方法应用于积冰计算。该方法已经在另一篇论文的边界层动态效应方面得到了验证。一旦该方法包含在结冰套件中,就可以验证其捕获冰形状的能力。更具体地说,将使用新边界层方法的结果与实验冰形进行比较,并使用广泛使用的简化积分法进行模拟。验证是在汇总级别上进行的,因为糖霜数据库通常仅提供对最终冰块形状的访问。但是,由于简化的积分方法已在许多结冰数值工具中使用,因此这种比较可以研究引入引入新方法来计算边界层的好处。新方法的主要结果是在光滑壁假设下对边界层预测的预测进行了改进,从而改善了冰形预测。结果表明,总的来说,用新方法比用基线方法更好地预测了冰的形状,或者用两种方法均能更好地预测。另外,由于传热系数往往会被简化的积分方法低估,因此新方法倾向于预测比基线方法更低的喇叭角。最后,讨论了这些结果对积冰解算器当前和未来发展的影响。特别是,新方法比简化积分方法更适合于三维扩展。

著录项

  • 来源
    《AIAA Journal》 |2020年第4期|1592-1606|共15页
  • 作者

  • 作者单位

    Univ Toulouse ONERA DMPE Aerodynam & Energet Modeling Dept BP 4025 2 Ave Ed Belin F-31055 Toulouse France;

    Univ Toulouse ONERA DMPE Airbus Def & Space 31 Rue Cosmonautes F-31055 Toulouse France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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