论文标题
数值发电机中的螺线管力平衡
Solenoidal force balances in numerical dynamos
论文作者
论文摘要
近年来,Geodynamo(和其他行星发电机)的数值模拟取得了重大进展。随着计算能力的提高,一些新模型声称越来越适合理解地球的核心动态。这种模型成功的一种衡量标准是能够复制核心内部运行力之间的预期平衡;预计科里奥利和洛伦兹部队是最重要的。由于存在压力梯度力的存在,这对于不可压缩的流程而言是复杂的,这使所有其他力的梯度部分动态不重要。这可能会使情况混淆,尤其是在考虑力的规模依赖性时。在这项工作中,我们通过消除每种力的梯度部分的替代方法来研究力平衡,以形成“电磁固定力平衡”。我们对几个球形模拟进行了长度依赖性分析,发现梯度零件的去除提供了与单独查看传统力量相比的替代力平衡的图片。螺线管余量与先前研究的结果相同,但也有显着差异。它们提供了更清洁的动力学总体图片,并在较小的尺度上引入了差异。这对声称已达到地球状态的Geodynamo模型具有含义:为了实现有意义的比较,仅应考虑力的螺线管部分。
Numerical simulations of the geodynamo (and other planetary dynamos) have made significant progress in recent years. As computing power has advanced, some new models claim to be ever more appropriate for understanding Earth's core dynamics. One measure of the success of such models is the ability to replicate the expected balance between forces operating within the core; Coriolis and Lorentz forces are predicted to be most important. The picture is complicated for an incompressible flow by the existence of the pressure gradient force which renders the gradient parts of all other forces dynamically unimportant. This can confuse the situation, especially when the scale dependence of forces are considered. In this work we investigate force balances through the alternative approach of eliminating gradient parts of each force to form `solenoidal force balances'. We perform a lengthscale dependent analysis for several spherical simulations and find that removal of gradient parts offers an alternative picture of the force balance compared to looking at traditional forces alone. Solenoidal force balances provide some agreement with the results of previous studies but also significant differences. They offer a cleaner overall picture of the dynamics and introduce differences at smaller scales. This has implications for geodynamo models purporting to have reached Earth-like regimes: in order to achieve a meaningful comparison of forces, only the solenoidal part of forces should be considered.