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 rectangle coil 矩形线圈(3)短形线圈(0)
 矩形线圈
 Calculate the Force and the Moment of Force of the Rectangle Coil in Nonunform Magnetic Field 计算矩形线圈在非均匀磁场中所受的力和力矩 短句来源 The difference of magnetic field generated by circle coil and rectangle coil is presented. 研究了圆形线圈和矩形线圈产生磁场的区别； 短句来源 Calulate and discuss the force and the moment of force of the rectangle coil in monuniform magnetic field. 计算并讨论矩形线圈在非均匀磁场中所受的力和力矩。 短句来源
 “rectangle coil”译为未确定词的双语例句
 The mathemetical models of electromagnetic force and moving velocity of inclusion particles are presented in molten aluminium with an electromagnetic field by rectangle coil and 50? Hz current according to the basic theory of magnetohydrodynamics (MHD). 根据电磁流体力学 (MHD)的基本理论 ,建立了在采用矩形电磁线圈和工频电源的条件下电磁分离铝熔体中夹杂颗粒的体积力、颗粒运动速度等数学模型·模拟计算结果表明 ,电磁体积力越大 ,分离力越大 ,夹杂颗粒运动速度越快 ; 夹杂颗粒的粒径越大 ,颗粒运动速度越快 ; 短句来源
 相似匹配句对
 Magnetic Field Calculation on Rectangle Current Coil 矩形载流线圈的空间磁场计算 短句来源 MAGNETIC FORCE OF RECTANGLE CURRENT-CARRYING COIL 矩形载流线圈的磁力分析 短句来源 coil and S. aureus. aureus均有抗性; 短句来源 Discussion on Coil Coatings 漫谈卷材涂料 短句来源 Embryo is small and rectangle. 胚小,长方形。 短句来源

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 Calulate and discuss the force and the moment of force of the rectangle coil in monuniform magnetic field. 计算并讨论矩形线圈在非均匀磁场中所受的力和力矩。 A mathemetical model of magnetic field in electromagnetic separation of inclusions from molten aluminum under rectangle coil and 50?Hz current is presented according to the magnetic vector potential integral equation and the basic theory of magnetohydrodynamics. The magnetic field distribution in the gap of coils is simulated by the model and the actual magnetic field distribution also is measured. The experimental results show that the magnetic field distribution in the gap of coils is uniform... A mathemetical model of magnetic field in electromagnetic separation of inclusions from molten aluminum under rectangle coil and 50?Hz current is presented according to the magnetic vector potential integral equation and the basic theory of magnetohydrodynamics. The magnetic field distribution in the gap of coils is simulated by the model and the actual magnetic field distribution also is measured. The experimental results show that the magnetic field distribution in the gap of coils is uniform and is consistemt with the model simulation. The magnetic field designed accord the simulated result is proved suitable in the practice. 根据电磁流体力学 (MHD)的基本理论 ,利用矢量磁位积分 ,建立了在采用矩形电磁线圈和工频电源的条件下电磁分离铝熔体中夹杂的电磁场数学模型 ,模拟计算了电磁感应线圈气隙中的磁场分布状态 ,同时对制做的感应线圈的实际磁场进行了测量·模拟计算磁场的分布状态与实际磁场的测量结果基本一致 ,都表明在电磁感应线圈气隙中磁场分布均匀 ,可以进行分离铝熔体中的非金属夹杂 The mathemetical models of electromagnetic force and moving velocity of inclusion particles are presented in molten aluminium with an electromagnetic field by rectangle coil and 50?Hz current according to the basic theory of magnetohydrodynamics (MHD). The results of the numerical simulation show that the greater electronmagnetic force the greater separating force is and the quicker the inclusion particles move,and the bigger the inclusion particle the quicker the particle moves,therefore,the separation... The mathemetical models of electromagnetic force and moving velocity of inclusion particles are presented in molten aluminium with an electromagnetic field by rectangle coil and 50?Hz current according to the basic theory of magnetohydrodynamics (MHD). The results of the numerical simulation show that the greater electronmagnetic force the greater separating force is and the quicker the inclusion particles move,and the bigger the inclusion particle the quicker the particle moves,therefore,the separation of particles bigger than 30?μm is easy,but it is hard to separate the particles smaller than 10?μm. 根据电磁流体力学 (MHD)的基本理论 ,建立了在采用矩形电磁线圈和工频电源的条件下电磁分离铝熔体中夹杂颗粒的体积力、颗粒运动速度等数学模型·模拟计算结果表明 ,电磁体积力越大 ,分离力越大 ,夹杂颗粒运动速度越快 ;夹杂颗粒的粒径越大 ,颗粒运动速度越快 ;粒径大于 30 μm的夹杂颗粒运动速度较快 ,容易用电磁方法分离 ,粒径小于 10 μm的夹杂颗粒运动速度较慢 ,难分离· << 更多相关文摘
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