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Numerical simulation of aircraft thermal anti-icing system based on a tight-coupling method

机译:基于紧密耦合法的飞机热防冰系统数值模拟

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摘要

Considering the influence of surface temperature distribution on air convective heat transfer coefficient, the robust tight-coupling method is firstly developed for aircraft thermal anti-icing simulations under icing conditions. To include the effects of the impinging water droplets on the conjugate heat transfer of thermal anti-icing systems, the Messinger thermodynamic model of runback water film is modified and added to the tightly coupled calculation of the external air flow and the internal solid skin heat conduction. Numerical simulations are carried out on an electro-thermal anti-icing system under both dry air and icing conditions, and the main conclusions below can be drawn. First, convective heat transfer coefficient changes slightly with surface temperature near the leading edge, but is obviously affected by temperature distribution in the downstream area. Second, the anti-icing temperature deviations between the predicted value and the experiment date are acceptable and comparable to the calculation results in the literature, verifying the feasibility and effectiveness of the tight-coupling method. Third, compared with the traditional decoupled loose-coupling method, the robust tight-coupling anti-icing method successfully captures the effect of surface temperature on convective heat transfer coefficient, and predicts higher temperature with lower drop rate on the downstream surfaces.
机译:考虑到表面温度分布对空气对流传热系数的影响,首先在糖化条件下开发了稳健的紧密耦合方法,用于飞机热防冰模拟。为了包括撞击水滴对热防冰系统的共轭传热的影响,修改了浪回水膜的Messinger热力学模型,并加入了外部空气流量的紧密耦合计算和内部固体皮肤热传导。在干燥空气和结冰条件下的电热防冰系统上进行数值模拟,并且可以绘制以下主要结论。首先,对流传热系数在前缘附近的表面温度略微变化,但在下游区域的温度分布显然是显着的影响。其次,预测值与实验日期之间的抗结冰温度偏差是可接受的,并且与文献中的计算结果相当,验证了紧密耦合方法的可行性和有效性。第三,与传统的解耦耦合方法相比,稳健的紧密耦合抗糖霜方法成功地捕获了表面温度对对流传热系数的影响,并在下游表面上预测下降率的较高液滴。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第2期|119061.1-119061.15|共15页
  • 作者单位

    Laboratory of Fundamental Science on Ergonomics and Environmental Control School of Aeronautic Science and Engineering Beihang University Beijing 100083 China;

    Laboratory of Fundamental Science on Ergonomics and Environmental Control School of Aeronautic Science and Engineering Beihang University Beijing 100083 China;

    Laboratory of Fundamental Science on Ergonomics and Environmental Control School of Aeronautic Science and Engineering Beihang University Beijing 100083 China;

    School of Chemical and Processing Engineering University of Leeds Leeds LS2 9JT UK;

    Laboratory of Fundamental Science on Ergonomics and Environmental Control School of Aeronautic Science and Engineering Beihang University Beijing 100083 China School of Chemical and Processing Engineering University of Leeds Leeds LS2 9JT UK;

  • 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
  • 中图分类
  • 关键词

    Aircraft icing; Conjugate heat transfer; Tight-coupling method; Electro-thermal anti-icing system; Numerical simulation;

    机译:飞机结冰;共轭传热;紧密耦合法;电热防冰系统;数值模拟;

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