首页> 外文会议>Joint Conference of IWHV2012 JK 2012 on EDHVE;Japan-Korea Joint Symposium on Electrical Discharge and High Voltage Engineering;International Workshop on High Voltage Engineering >Practical caution on lightning protection of grounded large structures against lightning parameters for height of evaluation positions along grounded large structures
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Practical caution on lightning protection of grounded large structures against lightning parameters for height of evaluation positions along grounded large structures

机译:关于接地大型结构的雷电保护措施,针对接地大型结构沿评估位置高度的防雷参数的实用注意事项

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摘要

The "deformation on waveforms in conductive currents of lightning return strokes to the earth I-c. for height on evaluation positions along the grounded large structures struck by the lightning return strokes" is mathematically comprehended in approximation with the fundamental explanation on ''transfer theory between conductive currents I_c and displacement currents I_d on surfaces of high voltage conductive objects", "electric fields along surfaces of high voltage large conductive objects E as determinant factors on transfer between conductive currents I_c and displacement currents I_d along high voltage large conductive objects" and "propagation on conductive currents I_c and potential ψ". The conventional experimental result, which has been already measured, on the characteristics in the deformation in the wave fronts in the conductive currents of lightning return strokes to the earth with tails I_c for the height in the evaluation positions along the high rise towers struck by the lightning return strokes is shown to be mathematically comprehended broadly. Lightning parameters on lightning protection of the grounded large structures are varying by the height of the evaluation positions along the grounded large structures owing to "deformation on waveforms in conductive currents of lightning return strokes to the earth I_c for height on evaluation positions along the grounded large structures struck by the lightning return strokes". The practical caution on the lightning protection of the grounded large structures against the lightning parameters for the height of the evaluation positions along the grounded large structures is insisted. In the lightning protection of the grounded large structures, the varying on the lightning parameter for the height of the evaluation positions along the grounded large structures must be carefully treated. 1. The deformation on the wave fronts in the conductive currents of the lightning return strokes to the earth with the tails I_c for the height on the evaluation positions along the grounded large structures with large width or large depth, which aren't so high, struck by the lightning return strokes is able to be predI_cted to be drastically appeared as well as the deformation in the wave fronts in the conductive currents of the lightning return strokes to the earth with the tails I_c for the height in the evaluation positions along the high rise towers struck by the lightning return strokes on the conventional experimental result. In short, the "enough high potential ψ along surfaces on the grounded large structures with large width or large depth which aren't so high" and "enough large surfaces on the grounded large structures with large width or large depth which aren't so high" cause the strong capacitive coupling between the grounded large structures and the grounded large surroundings of the grounded large structures including the ground to bring about the deformation on the wave fronts in the conductive currents of the lightning return strokes to the earth with the tails for the height of the evaluation positions along the grounded large structures I_c. 2. When tops of large size modern buildings including the high rise towers are struck by lightning return strokes to the earth 10/350 μs, 1/200 μs and 0.25/100 μs for examples, the average steepness on the rises in the conductive currents of the lightning return strokes for lower evaluation positions along the large size modern buildings I_c is deformed to be exactly larger. The high voltage, based on self-inductance and mutual-inductance, induced by the neighboring magnetic fields B from the deformed conductive currents of the lightning return strokes to the earth I_c is exactly higher than the high voltage induced by the neighboring magnetic fields B from the badly assumed conductive currents of the lightning return strokes to the earth 10/350 μs, 1/200 μs and 0.25/100 us on the lower evaluation positions along the large size modern buildings including the high rise towers. In the lower evaluation positions within and around along the large size modern buildings including the high rise towers, the average steepness on the rises in the neighboring electric fields E and the neighboring magnetic fields B caused by "potential difference ψ owing to deformed conductive currents of lightning return strokes to the earth I_c" and "deformed conductive currents of lightning return strokes to the earth I_c" is exactly larger than the average steepness on the rises in the neighboring electric fields E and the neighboring magnetic fields B caused by "potential difference ψ owing to badly assumed conductive currents of lightning return strokes to the earth 10/350 μs, 1/200 μs and 0.25/100 μs" and "badly assumed conductive currents of lightning return strokes to the earth 10/350 μs, 1/200 μs and 0.25/100 μs", respectively. In the lower evaluation positions within and around along the large size modern buildings including the high rise towers in such cases, the "harm of persons on short duration electric shocks and damage of internal system owing to the high voltage, stems from self-inductance and mutual-inductance, induced by neighboring magnetic fields B from deformed conductive currents of lightning return strokes to the earth I_c" and "harm in brains of persons on exposures in the neighboring electric fields E and neighboring magnetic fields B caused by the potential difference ψ owing to deformed conductive currents of lightning return strokes to the earth I_c and the deformed conductive currents of lightning return strokes to the earth I_c" are exactly more serious than those based on "potential difference ψ owing to badly assumed conductive currents of lightning return strokes to the earth 10/350 μs, 1/200 μs and 0.25/100 μs" and "badly assumed conductive currents of lightning return strokes to the earth 10/350 μs, 1/200 us and 0.25/100 μs". 3. When tops of the large size modern buildings including the high rise towers are struck by the lightning return strokes to the earth 10/350 μs, 1/200 μs and 0.25/100 μs for examples, the charge and specific energy on the deformed conductive currents of the lightning return strokes for the height of the evaluation positions along the large size modem buildings I_c aren't able to be specified without numerical calculation even in broad evaluation. The lightning parameters for the height of the evaluation positions along the grounded large structures ought to be numerically calculated with the mathematical comprehension on "transfer theory between conductive currents I_c and displacement currents I_d on surfaces of high voltage conductive objects", "electric fields along surfaces of high voltage large conductive objects E as determinant factors on transfer between conductive currents I_c and displacement currents I_d along high voltage large conductive objects" and "propagation on conductive currents I_c and potential ψ"
机译:“沿着接地的大型结构的雷击返回击中的评估位置处的高度,雷击返回地面的导电电流中的波形的波形变形”在数学上近似于关于“导电之间的传递理论”的基本解释。高压导体上的电流I_c和位移电流I_d”,“高压大导体E的表面上的电场是传导电流I_c和位移电流I_d在高压大导体上的转移的决定因素”和“传播评估中的高度,已测量的常规实验结果是关于雷击返回地面的导电电流中具有尾部I_c的雷电的传导电流中波前变形特性的常规实验结果,已经进行了测量沿高塔的位置被击中闪电回击在数学上被广泛地理解。接地的大型结构的防雷参数随接地的大型结构的评估位置的高度而变化,这是因为“沿接地的大型结构的评估位置的高度的向地面I_c的雷电回击的导电电流的波形发生了变形。被雷击击中的建筑物”。坚持针对接地大结构的雷电保护,针对沿着接地大结构的评估位置高度的雷电参数的实际注意事项。在对接地的大型结构物进行防雷保护时,必须认真对待沿接地的大型结构物的评估位置高度的雷电参数的变化。 1.雷击返回地面的导电电流中波前的变形,沿接地的大宽度或大深度的大型结构的评估位置处,尾部I_c的高度不高,被雷击击中的冲击能够被显着地出现,以及雷击到地面的导电电流中波前的变形以及沿高点的评估位置的高度的尾部I_c。在常规实验结果中,雷电回击击中的高耸塔。简而言之,“沿接地的大宽度或大深度的大型结构上的表面足够高的电位ψ并不那么高”和“接地的大宽度或大深度的大型结构上的较大表面上的足够大的电位”高”会导致接地的大型结构与接地的大型结构(包括地面)的接地大环境之间产生强电容耦合,从而使雷电回击的传导电流在波前产生波前变形,其尾部为沿接地大结构I_c的评估位置的高度。 2.例如,以10/350μs,1/200μs和0.25 / 100μs的雷电回击击中包括高层建筑的大型现代建筑的顶部时,传导电流的平均陡度会上升沿着大型现代建筑I_c的较低评估位置的雷电回程中的一部分会变形为恰好更大。雷电回程的变形的导电电流流到大地I_c时,相邻磁场B感应的基于自感和互感的高压正好高于相邻磁场B感应的高压。在大型高层建筑(包括高层塔楼)的较低评估位置,雷电返回地面的假定假定的导电电流分别为10/350μs,1/200μs和0.25 / 100 us。在大型高层建筑(包括高层塔楼)内部和周围的较低评估位置,相邻电场E和相邻磁场B的上升平均陡度是由“由于导电电流的变形引起的电势差ψ引起的”。雷击返回地面I_c”和“雷击返回地面的变形导电电流I_c”正好大于“电位差ψ”引起的相邻电场E和相邻磁场B上升沿的平均陡度归因于错误假定的雷击返回地面的导电电流10/350μs,1/200μs和0.25 / 100μs”和“错误假定的雷击返回地面的导电电流10/350μs,1/200μs和0.25 / 100μs”, 分别。在这种情况下,在大型高层建筑(包括高层塔楼)内部和周围的较低评估位置,“短时电击对人的伤害以及由于高压导致的内部系统损坏,源于自感和相邻磁场B由雷击的变形导电电流流向地球I_c引起的互感和“由于电位差ψ引起的相邻电场E和相邻磁场B的暴露对人的大脑造成的伤害”雷击返回地面的导电电流I_c和雷击返回地面的导电电流I_c比基于“电势差ψ”的情况要严重得多,这是由于错误假定雷击返回到地面的导电电流所致。接地10/350μs,1/200μs和0.25 / 100μs”和“错误假定的雷电传导电流返回到接地10/350μs,1/200 us和0.25 / 100μs”。 3.当大型的现代建筑(包括高层塔)的顶部被雷电击中地面10/350μs,1/200μs和0.25 / 100μs撞击时,变形后的电荷和比能即使在广泛的评估中,也无法在没有数值计算的情况下指定沿大型调制解调器建筑物I_c的评估位置高度的雷电回击的导电电流。沿接地大结构的评估位置高度的雷电参数,应使用“高压导电物体表面上的导电电流I_c和位移电流I_d之间的传递理论”,“沿表面的电场”的数学理解进行数值计算高压大导体E决定导电电流I_c和位移电流I_d沿高压大导体的转移的决定因素”和“导电电流I_c和电势ψ的传播”

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