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Effects of anisotropic composite skin on electrothermal anti-icing system

机译:各向异性复合蒙皮对电热除冰系统的影响

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摘要

To study the effects of anisotropic thermal conductivity of composite aircraft skin on the heat transfer characteristics of electrothermal anti-icing system, the differential equation of anisotropic heat conduction was established using coordinate transformation of principal anisotropy axis. In addition, it was coupled with the heat and mass transfer model of the runback water film on the anti-icing surface to perform numerical simulation of the electrothermal anti-icing system. The temperature results of the vertical and cylindrical orthotropic thermal conduction in the rectangular and semi-cylindrical composite skin were consistent with those obtained by the traditional orthotropic model, which verified the anisotropic heat conduction model. The temperature distribution of anti-icing surface agreed well with the literature data, which validated the coupled heat and mass model of the runback water flow and the anisotropic skin. The anisotropic thermal conductivity of composite skin would make temperature change more gradual, and the effect was more significant where the curvature of the temperature curve was greater. However, the anti-icing surface of the electrothermal anti-icing system was slightly affected by the anisotropic heat conduction of the multilayered composite skin.
机译:为了研究复合材料飞机蒙皮的各向异性导热系数对电热除冰系统传热特性的影响,利用主各向异性轴的坐标变换建立了各向异性导热的微分方程。此外,它还与防结冰表面上的回流水膜的传热和传质模型耦合,以进行电热防结冰系统的数值模拟。矩形和半圆柱形复合蒙皮中垂直和圆柱形正交异性导热的温度结果与传统正交异性模型获得的结果一致,从而验证了各向异性导热模型。防冰表面的温度分布与文献数据吻合得很好,验证了径流水流和各向异性蒙皮的热质耦合模型。复合表皮的各向异性导热系数将使温度变化更加平缓,并且在温度曲线的曲率较大的情况下效果更显着。然而,电热防冰系统的防冰表面受到多层复合蒙皮的各向异性热传导的轻微影响。

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