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Lightning Threat Forecast Simulation Using the Schrodinger- Electrostatic Algorithm

机译:闪电威胁预测施联施联型静电算法

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Many models have been propounded for forecasting lightning. Though majority of the model had shown accuracy, the response time in detecting natural phenomenon is quite low. In this model, we used the mathematical experimentation of the micro scale plasmas to develop the macro scale atmospheric plasma which we believe is a major influence of lightning. The Schrodinger-electrostatic algorithm was propounded to further increase both the accuracy and alacrity of detecting natural phenomena. According to our theoretical experimentation, the air density plays a major role in lightning forecast. Our guess was verified using the Davis Weather Station to track the air density both in the upper and lower atmosphere. The air density in the upper atmosphere showed prospect as a vital factor for lightning forecast.
机译:许多型号已被取消预测闪电。 虽然大多数模型表明了准确性,但检测自然现象的响应时间相当低。 在该模型中,我们利用微尺度等离子体的数学实验来开发我们认为是闪电的主要影响的宏观尺度大气等离子体。 施罗登格 - 静电算法被剥夺以进一步提高检测自然现象的准确性和众多。 根据我们的理论实验,空气密度在避雷预测中发挥着重要作用。 我们的猜测是使用戴维斯气象站验证的,以跟踪上下大气层的空气密度。 高层气氛中的空气密度显示出避雷预测的重要因素。

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