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Experimental validation of icing rate using rotational load

机译:使用旋转载荷的结冰率的实验验证

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Icing load and icing rate are necessary feedback variables for an intelligent anti/de-icing system to work effectively in harsh cold environment of high north. These parameters may be measured by axial loadings or by rotational loadings, as a function of current demand. However the former may not necessarily be dynamic, whereas the later necessarily be rotational. Sufficiently at a fixed rpm, a mathematical model between additional polar moment of inertia vs electrical demand of the sensor can be established to analytically shape the icing load and icing rate adequately as hypothesized in Cost 727. This paper aims to develop such model and is validated using experimental data from a case study conducted by Atmospheric Icing Research Team of Narvik University College at Cryospheric Environmental Simulator, Snow and Ice Research Center, (NIED) Japan. (C) 2016 Elsevier B.V. All rights reserved.
机译:结冰负荷和结冰率是智能防冰除冰系统在高寒北部严寒环境下有效运行所必需的反馈变量。这些参数可以根据电流需求通过轴向载荷或旋转载荷来测量。但是,前者不一定是动态的,而后者则一定是旋转的。以固定的rpm转速足够大,可以建立额外的惯性极矩与传感器的电需求之间的数学模型,以如成本727中所假设的那样,对结冰负荷和结冰率进行适当的分析。本文旨在开发这种模型并进行验证使用日本雪与冰研究中心(NED)的纳尔维克大学学院冰冻环境模拟器的大气结冰研究小组进行的案例研究得出的实验数据。 (C)2016 Elsevier B.V.保留所有权利。

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