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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Accounting for Variability in ULF Wave Radial Diffusion Models
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Accounting for Variability in ULF Wave Radial Diffusion Models

机译:会计ULF波径向的变化扩散模型

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Many modern outer radiation belt models simulate the long-time behavior of high-energy electrons by solving a three-dimensional Fokker-Planck equation for the drift- and bounce-averaged electron phase space density that includes radial, pitch-angle, and energy diffusion. Radial diffusion is an important process, often characterized by a deterministic diffusion coefficient. One widely used parameterization is based on the median of statistical ultralow frequency (ULF) wave power for a particular geomagnetic index Kp. We perform idealized numerical ensemble experiments on radial diffusion, introducing temporal and spatial variability to the diffusion coefficient through stochastic parameterization, constrained by statistical properties of its underlying observations. Our results demonstrate the sensitivity of radial diffusion over a long time period to the full distribution of the radial diffusion coefficient, highlighting that information is lost when only using median ULF wave power. When temporal variability is included, ensembles exhibit greater diffusion with more rapidly varying diffusion coefficients, larger variance of the diffusion coefficients and for distributions with heavier tails. When we introduce spatial variability, the variance in the set of all ensemble solutions increases with larger spatial scales of variability. Our results demonstrate that the variability of diffusion affects the temporal evolution of phase space density in the outer radiation belt. We discuss the need to identify important temporal and length scales to constrain variability in diffusion models. We suggest that the application of stochastic parameterization techniques in the diffusion equation may allow the inclusion of natural variability and uncertainty in modeling of wave-particle interactions in the inner magnetosphere.
机译:许多现代外辐射带模型模拟高能电子的长期行为通过求解三维福克尔普朗克漂移,bounce-averaged方程电子相空间密度,包括径向、螺旋角和能量扩散。扩散是一个重要的过程,通常以确定的扩散系数。基于统计超低的中值对于一个特定的频率(ULF)波力量Kp地磁指数。在径向数值整体实验扩散,引入时间和空间变化的扩散系数随机参数化,限制统计特性的基础观察。灵敏度的径向扩散在很长一段时间内的径向分布扩散系数,高亮显示当只使用中位数ULF信息丢失波浪发电。包括,乐团方面表现出更大的扩散迅速扩散系数不同,更大的扩散系数和方差与重尾分布。介绍空间变异性,方差所有随整体解决方案更大的空间尺度上的变化。表明扩散的可变性影响相空间的时间演化外辐射带的密度。需要识别重要的时间和长度尺度限制可变性扩散模型。的随机参数化技术扩散方程可能允许的自然可变性和不确定性建模内部的波粒相互作用磁气圈。

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