陈先中, 尹怡欣, 侯庆文, 鲁亿方, 王培元, 李敏. 高炉密闭环境下雷达料面测量电磁特性仿真[J]. 工程科学学报, 2011, 33(1): 87-92. DOI: 10.13374/j.issn1001-053x.2011.01.012
引用本文: 陈先中, 尹怡欣, 侯庆文, 鲁亿方, 王培元, 李敏. 高炉密闭环境下雷达料面测量电磁特性仿真[J]. 工程科学学报, 2011, 33(1): 87-92. DOI: 10.13374/j.issn1001-053x.2011.01.012
CHEN Xian-zhong, YIN Yi-xin, HOU Qing-wen, LU Yi-fang, WANG Pei-yuan, LI Min. Electromagnetic characteristic simulation of burden surface radar measurements in the BF closed environment[J]. Chinese Journal of Engineering, 2011, 33(1): 87-92. DOI: 10.13374/j.issn1001-053x.2011.01.012
Citation: CHEN Xian-zhong, YIN Yi-xin, HOU Qing-wen, LU Yi-fang, WANG Pei-yuan, LI Min. Electromagnetic characteristic simulation of burden surface radar measurements in the BF closed environment[J]. Chinese Journal of Engineering, 2011, 33(1): 87-92. DOI: 10.13374/j.issn1001-053x.2011.01.012

高炉密闭环境下雷达料面测量电磁特性仿真

Electromagnetic characteristic simulation of burden surface radar measurements in the BF closed environment

  • 摘要: 研究了高炉密闭环境下,雷达测量料面和料层厚度的微波电磁特性.利用电磁计算学和CST仿真方法,研究了媒介层介电常数模型,高炉料面和料层模型的微波透射、反射和吸收特性,高炉布料层数、雷达波入射角度和雷达波频段与炉料媒介层介电常数重构关系模型.利用雷达波反射和透射电磁特性,结合高炉雷达的分布式雷达传感阵列,并利用焦矿媒介层存在介电常数差的特征,实现了高炉内料面形状和三层焦矿厚度在线3D重构.

     

    Abstract: Microwave electromagnetic characteristics in radar measurements of burden surfaces and media thickness of an ore and coke (O/C) layer were researched in the closed environment of a blast furnace (BF). With electromagnetic calculations and CST simulation software, a dielectric constant model of the media layer was developed to study the transmission, reflection and absorption characteristics of the burden surface and the O/C layer in BF. Also a reconstruction relational model of the number of distributing O/C layers in BF, microwave angle and frequency band concerned with the dielectric constant of the media layer was established. Using trans-mission and reflection electromagnetic characteristics of radar waves, combining with BF radar distributed radar sensor array installation and the different dielectric constants of the O/C layer in BF, the three-dimensional reconstruction imaging of burden surfaces and O/C layer thickness in BF was realized on-line.

     

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