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A new approach to the use of Lyapunov's functions. I. Stability and qualitative properties of paths in gas-solid systems

机译:一种使用Lyapunov函数的新方法。一,气固系统中路径的稳定性和定性

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This paper contributes to the simulation of transients and stability properties of singular states in engineering and environmental gas-solid systems. Qualitative properties of paths around equilibrium, quasi-equilibrium and disequilibrium states in closed and open systems are investigated by Lyapunov functions or functionals, V, determined by an original method. The method requires first to assume a constant-sign time derivative of V with respect to perturbed dynamical equations, V, and next to determine V itself from a matrix formula. Such functions V, which may be of an indefinite sign, describe qualitative properties of system paths, and may be derived from the derivatives V attributed to the constant-sign rates of entropy production or related exergy sink. Examples confirming the effectiveness of the approach for testing stability and qualitative properties of paths in non-reacting and reacting gas-solid systems are presented. A nontrivial example of the research benefit is presented in the paper in the form of the original classification of drying-moistening paths, based on the nontrivial saddle form of V in countercurrent systems and the focus form of V in co-current systems.
机译:本文为工程和环境气固系统中奇异状态的瞬态和稳定特性的仿真做出了贡献。封闭和开放系统中围绕平衡,拟平衡和不平衡状态的路径的质量性质是通过Lyapunov函数或由原始方法确定的函数V研究的。该方法首先需要相对于被扰动的动力学方程式V假设V的恒定符号时间导数,然后从矩阵公式确定V本身。此类函数V可能具有不确定的符号,描述了系统路径的定性性质,并且可以从归因于熵产生或相关能级下降的恒定符号率的导数V导出。给出了一些实例,这些实例证实了该方法在非反应性和反应性气固系统中测试路径的稳定性和定性性质的有效性。本文以干燥-加湿路径的原始分类形式,以逆向系统中V的非平鞍形式和并流系统中V的聚焦形式为基础,给出了研究收益的一个重要例子。

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