New double-shielded power cables generating low magnetic field levels

M. D'amore, D. Paladino, M. S. Sarto
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引用次数: 4

Abstract

The design criteria of new medium voltage cables of a three-phase power line generating very low magnetic field levels are described. The double-shielded cables have the inner screen made of copper and the outer one realized by alloy-49 or steel-1010. The currents induced in the copper shields generate a magnetic field opposite to the one produced by the currents flowing in the inner conductors, thus reducing strongly the external magnetic field. The ferromagnetic shield has the function of confining the magnetic induction flux in order to increase the intensity of the circulating currents in the copper screens. The sizing of the cross-section of the copper screen, which is the crucial aspect of the project, is obtained by means of the thermal analysis of the cables and the computation of the generated magnetic field level. Moreover, the simulation of the three-phase line for the prediction of the power losses is carried out. Prototypes of the new cables are realized and the measurement of the 50 Hz magnetic field generated by the three-phase test line, 25 m long, is carried out in the laboratory. The very low levels of the measured magnetic induction prove the good performances of the new cables.
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新型低磁场双屏蔽电力电缆
介绍了极低磁场电平三相输电线路新型中压电缆的设计准则。双屏蔽电缆的内屏蔽由铜制成,外屏蔽由合金49或钢-1010制成。铜屏蔽中感应的电流产生的磁场与内部导体中流动的电流产生的磁场相反,从而强烈地减弱了外部磁场。铁磁屏蔽具有限制磁感应通量的作用,以增加铜屏蔽内的循环电流强度。通过对电缆的热分析和产生的磁场水平的计算,得到了铜网截面的尺寸,这是该工程的关键环节。此外,还对三相线路进行了仿真,以预测其功率损耗。实现了新电缆的原型,并在实验室中对长25米的三相测试线产生的50 Hz磁场进行了测量。测得的极低的磁感应强度证明了新电缆的良好性能。
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