论文标题
适用于最大$ k $效率的电厂的Curzon-Ahlborn模型的本地和全球稳定性分析
Local and global stability analysis of a Curzon-Ahlborn model applied to power plants working at maximum $k$-efficient power
论文作者
论文摘要
在有限的时间热力学(FTT)的背景下,嘈杂的扰动对真实热发动机的影响,对任何稳态制度的影响分析一直是一个有趣的话题。通过所谓的绩效制度提出了对其局部稳定性的研究:最大功率输出,最大生态功能等。最近,考虑到相同的性能制度,还研究了对内部热发动机的全球稳定性分析。我们介绍了一项对在称为最大k效率功率的广义有效功率状态下运行的电厂模型(Curzon-Ahlborn模型)的局部和全球稳定性分析的研究。我们应用Lyapunov稳定理论来构建Lyapunov函数,以证明Curzon-Ahlborn模型中中等温度稳态的渐近稳定行为。我们考虑了线性传热定律对真实发电厂的相肖像描述的影响,以及$ k $参数在扰动到热流的演变中的作用。通常,重组的操作条件在外部扰动中显示出更好的稳定性。
The analysis of the effect of noisy perturbations on real heat engines, working on any steady-state regime has been a topic of interest within the context of Finite-Time Thermodynamics (FTT). The study of their local stability has been proposed through the so-called performance regimes: maximum power output, maximum ecological function, among others. Recently, the global stability analysis of an endoreversible heat engine was also studied taking into account the same performance regimes. We present a study of local and global stability analysis of power plant models (the Curzon-Ahlborn model) operating on a generalized efficient power regime called maximum k-efficient power. We apply the Lyapunov stability theory to construct the Lyapunov functions to prove the asymptotically stable behavior of the steady-state of intermediate temperatures in the Curzon-Ahlborn model. We consider the effect of a linear heat transfer law on the phase portrait description of real power plants, as well as the role of the $k$ parameter in the evolution of perturbations to heat flow. In general, restructured operation conditions show better stability in external perturbations.