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A new technique for reducing extremely low frequency magnetic field emissions affecting large building structures

机译:减少影响大型建筑结构的极低频磁场辐射的新技术

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When large structures such as residential compounds or public buildings are under the influence of extremely low frequency (ELF) magnetic fields, such as the one generated by a system of railways fed by 16.67 Hz, standard methods of designing shielding structures by numerical methods usually fail. The latter can be explained by the difficulty posed in the computing process by the large aspect ratios involved due to thin layers of metal (a few millimetres or centimetres) in contrast to the large dimensions of the affected structure (several tens of meters). In some cases one has to utilize special approximations such as surface conductivity, which are not easy to handle when the designed shielding structure is clearly three -dimensional. Other alternatives such as experimentation in situ are very costly. Here, a new technique is presented of mitigating the field by using three-dimensional propagation of induced currents optimizing the field reduction factors and minimizing the cost of shielding material. The particular designing method is a hybrid of numerical simulations combined with lab experimentation using scaled models of the largernstructure. The method is rather cost-effective and flexible as various designs can be easily tested. Results are presented in the form of magnetic field values, at various locations in the buildings, before and after this mitigation technique is applied.
机译:当大型结构(例如住宅区或公共建筑物)受到极低频(ELF)磁场的影响时,例如由以16.67 Hz供电的铁路系统产生的磁场,通常无法通过数值方法设计屏蔽结构的标准方法。后者可以解释为计算过程中的困难,原因是与受影响结构的大尺寸(几十米)相比,金属薄层(几毫米或几厘米)所导致的高长宽比。在某些情况下,必须使用特殊的近似值,例如表面电导率,当设计的屏蔽结构明显为三维时,这不容易处理。其他替代方法(例如原位实验)非常昂贵。在此,提出了一种新技术,该技术通过使用感应电流的三维传播来减轻磁场,从而优化场减小因子并最小化屏蔽材料的成本。特殊的设计方法是使用大型结构的比例模型将数值模拟与实验室实验相结合的混合方法。该方法具有很高的成本效益和灵活性,因为可以轻松测试各种设计。在应用此缓解技术之前和之后,结果以磁场值的形式显示在建筑物中的各个位置。

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