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含碳Fe2O3微波加热升温过程数值模拟11

Temperature-rising simulation of microwave heating process of Fe2O3 powders containing carbon

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【作者】 韩继铖李解李保卫王君韩磊韩腾飞

【Author】 HAN Ji-cheng,LI Jie,LI Bao-wei,WANG Jun,HAN Lei,HAN Teng-fei State Key Laboratory of Integrated Exploitation of Bayan Obo Multi-Metal Resources,Inner Mongolia University of Science and Technology,Baotou 014010,China

【机构】 内蒙古科技大学白云鄂博矿多金属资源综合利用国家重点实验室

【摘要】 本文以含活性炭的Fe2O3粉末为研究对象,在氩气保护下对其进行微波还原焙烧实验。研究了Fe23还原焙烧的升温特性,同时对含碳Fe2O3试样在微波场中升温过程进行数值模拟。基于微波加热的特点及加热过程建立数学模型,确定了模拟计算所需的边界条件,利用C语言编程,实现了微波加热含碳Fe2O3的数值模拟过程;同时,根据能量守恒关系计算出微波耗散功率与物料升温的关系,模拟出含碳Fe2O3粉末的微波加热升温曲线,与实验所测的微波加热升温曲线拟合较好,这为研究物料在微波场中的升温过程提供了理论依据。

【Abstract】 In present article,the microwave reduction roasting process for Fe203 powders containing activated carbon was studied experimentally,where Argon gas was used as protective gas.The characteristic relation of rising temperature was researched and the numerical simulation of microwave heating was made for Fe203 powders containing carbon.Based on microwave heating characteristics and microwave heating process,a mathematical mode was established and the necessary boundary conditions was determined,and a numerical simulation of microwave heating process was achieved by C language programming.Meanwhile, according to energy conservation,the relationship between microwave dissipation power and temperature rising of heated materials was obtained and the simulated temperature curve of microwave heating for Fe203 powder containing carbon was made,which fitted well with the microwave heating curve measured with the experiment,so that it provides a theoretical basis for the study of the heating process of material in the microwave field.

【关键词】 Fe2O3微波加热数值模拟
【Key words】 Fe2O3microwave heatingnumerical simulation
【基金】 内蒙古自然科学基金项目(2012MS0714);内蒙古自治区高等学校科学研究项目(NJZY13149);内蒙古科技大学创新基金(2011NCL064);白云鄂博矿多金属资源综合利用国家重点实验室资助项目(BO-13-001)
  • 【会议录名称】 第十七届(2013年)全国冶金反应工程学学术会议论文集(下册)
  • 【会议名称】第十七届(2013年)全国冶金反应工程学学术会议
  • 【会议时间】2013-08-03
  • 【会议地点】中国山西太原
  • 【分类号】TF046.2
  • 【主办单位】中国金属学会、冶金反应工程学分会
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