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Collection efficiency and ice accretion calculations for a Boeing 737-300 inlet

机译:波音737-300入口的收集效率和冰增冰计算

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Collection efficiency and ice accretion calculations have been made for a Boeing 737-300 inlet using a three-dimensional panel code, an adaptive grid code, the NASA Lewis LEWICE3D grid-based ice accretion code. Flow solutions for the inlet were generated using the VSAERO panel code. Grids used in the ice accretion calculations were generated using the newly developed adaptive grid code ICEGRID3D. The LEWICE3D grid-based ice accretion program was used to calculate impingement efficiency and ice shapes. Ice shapes typifying rime and mixed icing conditions were generated for a 30-minute hold condition. All calculations were performed on an SGI Power Challenge computer. The results have been compared to experimental flow and impingement data. In general, the calculated flow and collection efficiencies compared well with experiment, and the ice shapes looked reasonable and appeared representative of the rime and mixed icing conditions for which they were calculated.
机译:使用三维面板代码,自适应网格Lewice3D网格的冰增冰代码,已经为Boeing 737-300入口进行了集合效率和冰增冰计算。使用VSAERO面板代码生成用于入口的流量解决方案。使用新开发的自适应网格码ICEGRID3D生成冰增冰计算的网格。基于LEWICE3D GRID的ICECRetion程序用于计算冲击效率和冰形状。为30分钟的保持条件产生了冰形状和混合糖霜条件。所有计算都在SGI电力挑战计算机上进行。结果与实验流程和冲击数据进行了比较。通常,计算的流动和收集效率与实验良好,冰形状看起来合理,并且出现代表它们的铃声和混合糖化条件。

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