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Electromagnetic force on a current-carrying coil interacting with a moving electrically conducting cylinder

机译:载流线圈上的电磁力与移动的导电圆柱体相互作用

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We present a numerical analysis of a variant of Lorentz force velocimetry (LFV) termed electromagnetic Lorentz force velocimetry (EM-LFV). Both LFV and EM-LFV are techniques for the non-contact measurement of liquid metal flows in metallurgical applications that rely on the measurement of a force acting upon a magnetic system interacting with the liquid metal. Whereas LFV relies on permanent-magnet systems, EM-LFV is based upon electromagnets. We formulate and analyse a simple model of EM-LFV which consists of a single circular coil interacting with a moving solid cylinder. We compute the Lorentz force acting on the coil as a function of the two geometry parameters characterizing the problem and compare the numerical results with analytical approximations for three limiting cases. Our numerical results serve as a verification and validation tool for future full-scale simulations of EM-LFV involving realistic complex electromagnets and three-dimensional turbulent flow geometries.
机译:我们介绍了一种称为电磁洛伦兹力测速仪(EM-LFV)的洛伦兹力测速仪(LFV)变体的数值分析。 LFV和EM-LFV都是用于冶金应用中液态金属流量的非接触式测量的技术,该技术依赖于作用在与液态金属相互作用的磁性系统上的力的测量。 LFV依靠永磁体系统,而EM-LFV是基于电磁体的。我们制定并分析了EM-LFV的简单模型,该模型由与移动的实心圆柱相互作用的单个圆形线圈组成。我们根据表征该问题的两个几何参数计算作用在线圈上的洛伦兹力,并将数值结果与三种极限情况的解析近似值进行比较。我们的数值结果可作为验证和验证工具,用于未来的EM-LFV全面模拟,包括逼真的复杂电磁体和三维湍流几何形状。

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