电磁脉冲除冰技术的应用进展及研究现状
作者:
作者单位:

1.a.华润电力技术研究院有限公司 2.广东 东莞 3.523808;4.华润电力技术研究院有限公司 5.华润新能源黎平风能有限责任公司 6.贵州 7.557300;8.重庆大学雪峰山能源装备安全国家野外科学观测研究站

中图分类号:

U469.72

基金项目:

风力发电机叶片快速气动脉冲除冰机理与方法研究


Progress in the application of electromagnetic pulse de-icing technology and current research status
Author:
Affiliation:

1.a. China Resources Power Technology and Research Institute Co.,Ltd. Guangdong Dongguan 523808;2.b. China Resources New Energy Lianzhou Wind Energy Co.,Ltd. Guangdong 513444;3.c. China Resources New Energy Liping Wind Energy Co.

Fund Project:

Research on Mechanism and Method of Rapid Pneumatic Pulse Deicing for Wind Turbine Blades

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    摘要:

    电磁脉冲除冰技术是指以脉冲电流或脉冲磁场的形式,将电磁脉冲能量转化为脉冲力,改变金属材料的形状,破坏冰层与材料表面之间的粘接力,从来达到冰层脱落的目的。本文从电磁脉冲技术的研究背景、影响除冰激励因素以及在不同行业中运用3个方面,梳理了电磁脉冲除冰技术的作用原理,评述了国内外相关基础理论研究进展;从结构响应、脉冲电流大小、金属材料厚度、线圈-金属材料间距4个方面,分析了影响除冰效果的因素;分别从应用和基础理论两个方面指出了电磁脉冲除冰技术存在的问题,从控制系统智能化、金属材料优化、数值计算3个方面,展望了电磁脉冲除冰技术的研究方向。

    Abstract:

    Electromagnetic pulse (EMP) de-icing technology refers to the form of pulsed current or pulsed magnetic field, which converts EMP energy into pulsed force, changes the shape of metal materials, destroys the adhesion between the ice layer and the surface of the material, and never achieves the purpose of ice layer falling off. This paper, from the research background of electromagnetic pulse technology, the influence of de-icing incentive factors, and the use of different industries in three aspects, combing the role of electromagnetic pulse de-icing technology principle, reviewed the progress of the relevant basic theory research at home and abroad; from the structure of the response, the size of the pulse current, the thickness of the metal material, the coil-metal material spacing in four aspects, analyzed the factors affecting the effect of de-icing; respectively, from the application and basic theory The problems of EMP de-icing technology are pointed out from two aspects, and the research direction of EMP de-icing technology is expected from three aspects, namely, intelligent control system, optimization of metal materials and numerical calculation.

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  • 收稿日期:2024-11-24
  • 最后修改日期:2025-02-22
  • 录用日期:2025-02-25
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