Power Series Method in the Application of Calculating Eddy Current Fields in Induction Through Heating Installations 幂级数法在感应透热设备的涡流场计算中的应用
With that equation, the eddy current field, the temperature field and the equivalent circuit were coupled analyzed for transverse flux induction heating process for continuously moving strip, where three dimensional finite element method was applied to calculate the coupled field. 基于此方程,对连续运动带材横向磁通感应加热过程进行了涡流场、温度场与等效电路的耦合分析,其中耦合场的计算采用了三维有限元方法。
Research on eddy current heating apparatus 涡电流加热实验仪的研制
New Technology of Eddy Current Electric Heating Decompose in Monazite Product 涡流电加热分解独居石新工艺研究
3D FEM Used in Transverse Flux Eddy Current Induction Heating 三维有限元法在横向磁通涡流感应加热中的应用
The Effect of Coil Geometry on the Distributions of Eddy Current and Temperature in Transverse Flux Induction Heating Equipment 横向磁通感应加热装置中线圈形状对涡流及温度分布的影响
According to Maxwell ′ s equations and heat-conduction differential equation, a mathematical modal was developed to describe the distribution of electromagnetic field, inductive eddy current and thermal field in the axisymmetric workpieces for induction heating. 从麦克斯韦方程组和导热微分方程出发,导出了轴对称感应加热工件的电磁场、感生涡流和温度场分布的基本方程;
With neural network the eddy current and temperature distribution prediction on the continuously moving thin conducting strips in transverse flux induction heating ( TFIH) equipment is presented. 利用神经网络预测横向磁通感应加热中连续运动金属薄板表面涡流分布和温度分布。
Moreover, the figures of the electromagnetic and eddy current density are obtained with the help of MATLAB and ANSYS software. The skin effect and the distribution of electromagnetic field are described clearly in induction heating. 借助MATLAB和ANSYS软件进行了电磁场和涡流分布计算,形象描述了感应加热中的电磁场分布规律及集肤效应。
Now, commercial induction cooker is one of the fastest growing electrical home appliances products, its Working principle mainly is high-frequency harmonic current produce eddy current in the bottom of pan, and then reach the purpose of heating pan. 商用电磁炉是现在发展最快的家电产品之一,主要利用高频谐振电流在锅具底部产生涡流,从而达到加热锅具的目的。
With the improvement of permanent magnet coupler driving performance, driven load capacity can be enhanced and energy transfer efficiency can be increased which reduces eddy current heating of the conductor plate. 改善永磁磁力偶合器的驱动性能,首先可以提高永磁磁力偶合器驱动负载的能力,其次也可以提高永磁磁力偶合器能量传递效率,减少导体盘涡流发热。