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Analysis of air termination system of the lightning protection scheme for the Indian satellite launch pad

机译:印度卫星发射台防雷方案的空气终端系统分析

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Any satellite launch mission is a complex and expensive process and great care and precautions need to be taken for a safe and successful launch. A lightning stroke can be hazardous to the satellite launch system. Therefore extensive care has to be taken to protect the satellite launch pad against lightning. The paper aims at evaluating the efficacy of the aerial receptor system of the lightning protection scheme employed for protecting the Indian satellite launch pad. Significant upward leader activities are expected from tall objects during the approach of the descending leader and therefore any method that is employed for evaluating their attractive radii must take into account the different process involving and connected with the breakdown of air. Among such models the Rizk model, originally developed for isolated towers and conductors, was found to be very appropriate for the present work. To apply it to the present problem many modifications were necessary; all the simulations were carried out using this modified model. The charge simulation method has been used for the computation of the electric field. Simulations with inclined downward leaders indicated that the vertical leader descent represents the worst case scenario, and hence all the calculations were carried out with a vertical leader descent only. The maximum current in a bypass stroke was found to be 14 kA and this occurs for a stroke descending vertically along a straight line directly above the launch vehicle. The total probability of bypass strokes was found to be in the range of one flash per 1095-510 years (for the value of Td which is reported to be between 50-90 thunderstorm-days per year). Similarly, the total number strokes to the protection system in an year was estimated to be less than two flashes per year. Further, some sensitivity analysis was also carried out to determine the dependency of bypass stroke on height of the protection system and total length of the descending leader. An attempt was also made to arrive at a rough estimate of maximum bypass current under positive lightning.
机译:任何卫星发射任务都是一个复杂而昂贵的过程,为确保安全成功发射,必须格外小心并采取预防措施。雷击可能会危害卫星发射系统。因此,必须格外小心以保护卫星发射台免受雷击。本文旨在评估用于保护印度卫星发射台的防雷方案的空中接收器系统的功效。下降的领导者接近时,预计高个子对象会发生重大的向上领导者活动,因此,用于评估其吸引力半径的任何方法都必须考虑到涉及空气分解并与之相关的不同过程。在这些模型中,最初为隔离塔和导体开发的Rizk模型被认为非常适合当前的工作。为了将其应用于当前问题,需要进行许多修改。所有模拟都是使用此修改后的模型进行的。电荷模拟方法已用于电场的计算。具有向下倾斜的前导杆的模拟表明,垂直前导杆下降代表最坏的情况,因此所有计算仅在垂直前导杆下降的情况下进行。发现旁路冲程中的最大电流为14 kA,这发生在冲程沿运载工具正上方的直线垂直下降的情况下。发现绕过冲程的总概率为每1095-510年1次闪动(对于Td值,据报道为每年50-90个雷暴天)。同样,一年中保护系统的冲程总数估计少于每年两次闪烁。此外,还进行了一些敏感性分析,以确定旁路行程对保护系统高度和下降导杆总长度的依赖性。还尝试对正向雷电下的最大旁路电流进行粗略估计。

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