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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >New method for tracking the movement of ionospheric plasma
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New method for tracking the movement of ionospheric plasma

机译:跟踪运动的新方法电离层等离子体

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摘要

A method to track the flow of plasma in the Earth's ionosphere is presented. This takes maps of total electron content (TEC) at various times, and by comparing them derives a map of bulk velocities. The method is a modification of the Horn-Schunck scheme used in computer vision, whereby the aperture problem (caused by the scalar input field not containing enough information to uniquely constrain the vector output field) is overcome by making pragmatic assumptions about the divergence and rotation of the flow. The continuity equation linking plasma velocity and density is given source terms constrained by models of plasma generation and recombination. This can be used to mitigate solar terminator effects, where the close proximity of daytime plasma generation and nighttime recombination causes the impression of plasma flow. The method successfully reconstructs the behavior of test data. It also gives plausible results with real electron density maps from the 2003 Halloween Storms.
机译:一个方法来追踪的等离子体流地球的电离层。总电子含量(TEC)在不同时期,并通过比较得出大量的地图速度。Horn-Schunck方案应用于计算机视觉、即光圈(造成的问题标量输入字段包含不够独特的约束向量的信息输出字段)克服通过务实假设的散度和旋转流。速度和密度是给定源项等离子体的生成和约束模型重组。《终结者》的影响,近距离的白天的等离子体生成和夜间重组导致等离子体的印象流。测试数据的行为。结果与实际的电子密度图2003年万圣节风暴。

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