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Poynting vector flow in a circular circuit

机译:圆形回路中的Poynting矢量流

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A circuit is considered in the shape of a ring, with a battery of negligible size and a wire of uniform resistance. A linear charge distribution along the wire maintains an electrostatic field and a steady current, which produces a constant magnetic field. Earlier studies of the Poynting vector and the rate of flow of energy considered only idealized geometries in which the Poynting vector was confined to the space within the circuit. But in more realistic cases, the Poynting vector is nonzero outside as well as inside the circuit. An expression is obtained for the Poynting vector in terms of products of integrals, which are evaluated numerically to show the energy flow. Limiting expressions are obtained analytically. It is shown that the total power generated by the battery equals the energy flowing into the wire per unit time.
机译:电路被认为是环形的,其电池的尺寸可以忽略不计,并且导线的电阻均匀。沿导线的线性电荷分布保持静电场和稳定电流,从而产生恒定磁场。早期对Poynting矢量和能量流率的研究仅考虑了理想化的几何形状,其中Poynting矢量局限于电路内部。但是在更实际的情况下,电路的内部和外部的Poynting向量都不为零。对于Poynting向量,根据积分乘积获得一个表达式,对其进行数值评估以显示能量流。极限表达式是通过解析获得的。结果表明,电池产生的总功率等于每单位时间流入电线的能量。

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