A model for Thundercloud Charge Separation

K. Tennakone, P. Hewageegana
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引用次数: 0

Abstract

A theoretical model of thundercloud charge separation is presented. The model assume that  moisture in  the updraft moving  as a stream with uniform velocity condenses into particles of graupel  in reaching cooler regions of the atmosphere.  Falling graupels acquire a negative charge by shedding the inductive positive charge which is carried away by the updraft. Charged graupels moves downward subjected to gravity, force due to the collective electric field and air resistance. Non-linear equations governing the dynamics of the system demonstrate existence of a stable equilibrium electric field of the order of magnitude needed for dielectric breakdown of air. Model also shows that thundercloud electric field could undergo pulsations at infrasonic frequencies and synchronously emit acoustic waves at the same frequency.  Preferential positive inductive charging of graupel is explained as a consequence of the proton conductivity of ice. DOI: http://dx.doi.org/10.4038/sljp.v13i2.5432 Sri Lankan Journal of Physics, Vol. 13(2) (2012) 01-07
雷云电荷分离模型
提出了雷云电荷分离的理论模型。该模型假设上升气流中的水分以匀速流的形式在到达大气较冷的区域时凝结成霰颗粒。下落的霰通过脱落被上升气流带走的感应正电荷而获得负电荷。带电的霰在重力的作用下向下移动,重力是由集体电场和空气阻力引起的。控制系统动力学的非线性方程证明了空气介电击穿所需数量级的稳定平衡电场的存在。模型还表明,雷云电场可以在次声波频率上发生脉动,并同步发射同一频率的声波。霰的优先正感应电荷被解释为冰的质子电导率的结果。DOI: http://dx.doi.org/10.4038/sljp.v13i2.5432斯里兰卡物理杂志,Vol. 13(2) (2012) 01-07
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