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Ultrasonic ice protection systems: analytical and numerical models for architecture trade-off

机译:超声波冰保护系统:用于架构权衡的分析和数值模型

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摘要

Protection systems against ice conventionally use thermal, pneumatic or electro-thermal solutions. However, they are characterized by high energy consumption. This article focuses on low-consumption electromechanical deicing solutions based on piezoelectric transducers. After a review of the state of the art to identify the main features of electromechanical de-icing devices, piezoelectric transducer-based architectures are studied. Analytical models validated by numerical simulations allow trend studies to be performed which highlight the resonance modes and the ultrasonic frequency ranges that lead to low-consumption, compact ultrasonic deicing devices. Finally, de-icing systems widely studied with bonded ceramics and de-icing systems less usual with Langevin pre-stressed piezoelectric transducers are compared and a Langevin piezoelectric transducer-based device leading to an interesting compromise is tested.
机译:防冰保护系统通常使用热,气动或电热解决方案。然而,它们的特征在于高能耗。本文重点介绍基于压电换能器的低功耗机电除冰解决方案。在回顾了确定机电除冰设备主要特征的最新技术之后,研究了基于压电换能器的架构。通过数值模拟验证的分析模型允许进行趋势研究,该研究突出显示了导致低功耗,紧凑型超声除冰设备的共振模式和超声频率范围。最后,比较了用粘结陶瓷广泛研究的除冰系统和Langevin预应力压电换能器不常用的除冰系统,并对基于Langevin压电换能器的装置进行了有趣的折衷测试。

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