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Unsteady Thermal Simulations of Wing Ice Protection Systems Integrated in Metallic or Composite Structures

机译:金属或复合结构中集成的翼冰保护系统的不稳定热模拟

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Advanced sizing of the thermal wing ice protection system (WIPS) requires an improved and a robust manner to simulate the system operation in unsteady phases and particularly in de-icing operations. A two dimensional numerical tool has been developed to enable the simulation of unsteady anti-icing and de-icing operations. For example, the WIPS may be activated with delay after entering into the icing conditions. In this case, ice starts to accrete on the leading edge before the WIPS heats up the skin. Another example is the ground activation of the WIPS for several seconds to check its functionality: low external cooling may cause high thermal constraints that must be estimated with accuracy to avoid adverse effects on the structure. Thermal de-icing WIPS integrated in composite structures intrinsically have unsteady behaviors; the tool enables the computation of the skin temperature evolution with the time. This provides an insightful indication on the de-icing performance of the WIPS and allows adjusting the design of the WIPS to optimize the system energy consumption. Calibrations through IWT were conducted to ensure the accuracy of the global thermal prediction. Regarding structural sizing, the modelling provides temperature distribution mapping of the structure. This is advantageous for assessing the impact of thermal ageing of metallic structures or for validating the used materials of composite structures. Therefore the weight can be optimized.
机译:热翼冰保护系统(WIPS)的先进尺寸需要改进的和稳健的方式来模拟不稳定阶段的系统操作,特别是在去冰操作中。已经开发了二维数值工具来实现不稳定的防冰和去冰操作的模拟。例如,在进入结冰条件之后,可以在延迟延迟激活WIPS。在这种情况下,冰开始在前缘开始在棉花上升到皮肤之前。另一个例子是WIPS的接地激活几秒钟来检查其功能:低外部冷却可能导致高热约束必须精确地估计,以避免对结构的不利影响。在复合结构中集成的热脱冰织物本质上具有不稳定的行为;该工具可以随着时间的推移计算皮肤温度演变。这提供了关于纺纱的去结冰性能的富有识别指示,并允许调节灯具的设计,以优化系统能量消耗。通过IWT进行校准以确保全局热预测的准确性。关于结构尺寸,建模提供了结构的温度分布映射。这对于评估金属结构的热老化或用于验证复合结构的使用材料的影响是有利的。因此可以优化重量。

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