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Deflection of cosmic radiation near power lines--a theoretical approach.

机译:电线——附近的宇宙辐射的挠度理论方法。

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The purpose of this work is to determine if, and to what extent, cosmic radiation can be deflected by power lines. As an alternative to experimental measurements, a computer program was developed to simulate particle trajectories. Starting from given initial values, the cosmic particles' trajectories through the electromagnetic field surrounding power lines are simulated. Particular efforts have been made to choose initial values that represent the actual physical condition of the cosmic radiation at ground level. The results show an average decrease in the particle flux density in an area below a power line and a corresponding increased flux between 12 m and 35 m on either side of the center of the power line. The average shift in flux density is, however, extremely small (less than 0.15% for low energy electrons alone, and less than 0.01% for total particle flux density) and probably not measurable with existing detector technology. The calculated particle deflection is far too small to be of any possible health significance.
机译:这项工作的目的是确定,和到什么程度,宇宙辐射可以偏转通过电线。测量,计算机程序开发模拟粒子轨迹。给定的初始值,宇宙粒子的通过电磁场轨迹周围的电线模拟。一直在努力选择初始值代表的实际身体状况宇宙辐射在地面上。显示平均粒子通量下降密度低于电力线路和在一个区域相应的增加12米之间的通量和35米电源线的中心的两侧。然而,平均通量密度的变化低能量非常小(小于0.15%电子,并为总量不到0.01%粒子通量密度),可能不是与现有的探测器可测量的技术。计算粒子偏转太小了任何可能的健康意义。

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