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Investigating the Relative Contributions of Charge Deposition and Turbulence in Organizing Charge within a Thunderstorm

机译:调查电荷沉积和湍流的相对贡献在雷暴中组织收费

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Large-eddy-resolving simulations using the Collaborative Model for Multiscale Atmospheric Simulation (COMMAS), which contains microphysical charging and branched-lightning parameterizations, produce much more complex net charge structures than conventionally visualized from previous observations, simulations, and conceptual diagrams. Many processes contribute to the hydrometeor charge budget within a thunderstorm, including advection, hydrometeor differential sedimentation, subgrid turbulent mixing and diffusion, ion drift, microphysical separation, and the attachment of ion charge deposited by the lightning channel. The lightning deposition, sedimentation, and noninductive charging tendencies contribute the most overall charge at relatively large scales, while the advection tendency, from resolved turbulence, provides the most texture at small scales to the net charge density near the updraft region of the storm. The scale separation increases for stronger storm simulations. In aggregate, lightning deposition and sedimentation resemble the smoother distribution of the electric potential, while evidence suggests individual flashes could be responding to the fine texture in the net charge. The clear scale separation between the advection and other net charge tendencies suggest the charge advection is most capable of providing net charge texture; however, a clear-cut causality is not obtained from this study.
机译:使用多尺度大气模拟(逗号)的大辅助解析模拟,其中包含微神科充电和分支闪电参数化,该结构比以前观测,模拟和概念图从常规可视化,产生更复杂的净充电结构。许多过程有助于雷暴内的水力计量费用预算,包括平流,水力计差沉降,细结湍流混合和扩散,离子漂移,微手术分离以及雷电通道沉积的离子电荷的附着。雷击,沉降和非牢固充电倾向导致相对大的尺度的最大电荷,而来自分辨湍流的平流倾向,在暴风雨的上升区域附近的净电荷密度提供最大的纹理。尺度分离增加了更强烈的风暴模拟。在聚集体中,雷电沉积和沉降类似于电位的光滑,而证据表明单个闪烁可能会在净充电中响应细纹。平流和其他净电荷倾向之间的明确规模分离表明,电荷平流最有能力提供净充电质地;然而,从本研究中没有获得明确的因果关系。

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