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Power requirement of the geodynamo from ohmic losses in numerical and laboratory dynamos

机译:数值和实验室发电机的欧姆损耗对地发电机的功率要求

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In the Earth's fluid outer core, a dynamo process converts thermal and gravitational energy into magnetic energy. The power needed to sustain the geomagnetic field is set by the ohmic losses (dissipation due to electrical resistance)(1). Recent estimates of ohmic losses cover a wide range, from 0.1 to 3.5 TW, or roughly 0.3 - 10% of the Earth's surface heat flow(1-4). The energy requirement of the dynamo puts constraints on the thermal budget and evolution of the core through Earth's history(1-5). Here we use a set of numerical dynamo models to derive scaling relations between the core's characteristic dissipation time and the core's magnetic and hydrodynamic Reynolds numbers dimensionless numbers that measure the ratio of advective transport to magnetic and viscous diffusion, respectively. The ohmic dissipation of the Karlsruhe dynamo experiment(6) supports a simple dependence on the magnetic Reynolds number alone, indicating that flow turbulence in the experiment and in the Earth's core has little influence on its characteristic dissipation time. We use these results to predict moderate ohmic dissipation in the range of 0.2-0.5 TW, which removes the need for strong radioactive heating in the core(7) and allows the age of the solid inner core to exceed 2.5 billion years.
机译:在地球的流体外核中,发电机过程将热能和重力能转换为磁能。维持地磁场所需的功率由欧姆损耗(由于电阻引起的耗散)(1)设定。最近的欧姆损耗估计范围很广,从0.1到3.5 TW,约占地球表面热流量的0.3-10%(1-4)。发电机的能量需求在地球历史上限制了热收支和核心的演化(1-5)。在这里,我们使用一组数值发电机模型来推导岩心的特征耗散时间与岩心的磁和流体动力雷诺数之间的比例关系,该无量纲数分别测量对流输运与磁和粘滞扩散的比率。卡尔斯鲁厄发电机实验(6)的欧姆耗散仅支持对雷诺数的简单依赖,表明实验和地心的湍流对其特性耗散时间几乎没有影响。我们使用这些结果来预测在0.2-0.5 TW范围内的中等欧姆耗散,这消除了对铁芯进行强辐射加热的需求(7),并使固体内核的使用寿命超过25亿年。

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