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The shielding of overhead lines against lightning

机译:架空线的防雷措施

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Most overhead transmission lines carry over-running earth wires, one function of which is to shield phase conductors from direct lightning strokes. Published theories of shielding are incompatible with modern knowledge of lightning. The paper emphasizes the importance of the charges bound on the earth wire and phase conductor by the leader stroke. Equality of charges is taken as a condition under which both wires are equally likely to be struck. For adequate shielding, the charge on the earth wire should exceed that on the conductor. The charges are calculated from the field due to the leader, and it is shown that equality of charges corresponds to both wires lying on the same equipotential of the leader. The limiting position for protection is determined by the slope of the equipotential, and as this depends on the distance between leader and transmission line, the limiting value of which depends on the stroke current, the protection afforded isa function of stroke current. Calculation suggests that shielding is normally adequate for conductors in a wedge of semi-vertical angle 45???????° of which the apex line is the earth wire.
机译:大多数架空传输线都带有超速运行的地线,其功能之一是屏蔽相导体免受直接雷击。出版的屏蔽理论与现代的闪电知识是不相容的。本文强调了通过引线行程在地线和相导体上束缚的电荷的重要性。电荷均等被视为两条电线均被击打的条件。为了获得足够的屏蔽,接地线上的电荷应超过导体上的电荷。电荷是根据引出线产生的电场计算得出的,表明电荷相等等于两条导线都位于引出线的等电位上。保护的极限位置由等电位差的斜率确定,并且这取决于引导线和传输线之间的距离,其极限值取决于行程电流,因此提供的保护是行程电流的函数。计算表明,通常对于半垂直角为45°的楔形导体来说,屏蔽是足够的,其顶线是地线。

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