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Colloquium PaperSelf-organized complexity in the physical biological and social sciences: Natural variability of atmospheric temperatures and geomagnetic intensity over a wide range of time scales

机译:讨论会论文物理生物学和社会科学领域的自组织复杂性:大气温度和地磁强度在各种时间范围内的自然变化

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摘要

The majority of numerical models in climatology and geomagnetism rely on deterministic finite-difference techniques and attempt to include as many empirical constraints on the many processes and boundary conditions applicable to their very complex systems. Despite their sophistication, many of these models are unable to reproduce basic aspects of climatic or geomagnetic dynamics. We show that a simple stochastic model, which treats the flux of heat energy in the atmosphere by convective instabilities with random advection and diffusive mixing, does a remarkable job at matching the observed power spectrum of historical and proxy records for atmospheric temperatures from time scales of one day to one million years (Myr). With this approach distinct changes in the power-spectral form can be associated with characteristic time scales of ocean mixing and radiative damping. Similarly, a simple model of the diffusion of magnetic intensity in Earth's core coupled with amplification and destruction of the local intensity can reproduce the observed 1/f noise behavior of Earth's geomagnetic intensity from time scales of 1 (Myr) to 100 yr. In addition, the statistics of the fluctuations in the polarity reversal rate from time scales of 1 Myr to 100 Myr are consistent with the hypothesis that reversals are the result of variations in 1/f noise geomagnetic intensity above a certain threshold, suggesting that reversals may be associated with internal fluctuations rather than changes in mantle thermal or magnetic boundary conditions.
机译:气候学和地磁学中的大多数数值模型都依赖确定性有限差分技术,并试图在适用于其非常复杂系统的许多过程和边界条件上包括尽可能多的经验约束。尽管模型复杂,但其中许多模型仍无法再现气候或地磁动力学的基本方面。我们展示了一个简单的随机模型,该模型通过对流不稳定性,随机对流和扩散混合来处理大气中的热能通量,在匹配从时间尺度到大气温度的历史和代理记录的观测功率谱方面发挥了出色的作用一天到一百万年(Myr)。通过这种方法,功率谱形式的明显变化可以与海洋混合和辐射衰减的特征时间尺度相关联。同样,一个简单的磁芯在地核中扩散的模型,加上局部强度的放大和破坏,可以从1(Myr)到100 yr的时间尺度再现观察到的地球地磁强度的1 / f噪声行为。此外,极性反转率从1 Myr到100 Myr的时标的波动统计数据与以下假设相符:反转是1 / f噪声地磁强度在某个阈值以上变化的结果,这表明反转可能与内部波动有关,而不是与地幔热或磁边界条件的变化有关。

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