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Nonlinear dynamics analysis of a membrane Stirling engine: Starting and stable operation

机译:膜式斯特林发动机的非线性动力学分析:启动和稳定运行

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摘要

This paper presents the work devoted to the study of the operation of a miniaturized membrane Stirling engine. Indeed, such an engine relies on the dynamic coupling of the motion of two membranes to achieve a prime mover Stirling thermodynamic cycle. The modelling of the system introduces the large vibration amplitudes of the membrane as well as the nonlinear dissipative effects associated to the fluid flow within the engine. The nonlinearities are expressed as polynomial functions with quadratic and cubic terms. This paper displays the stability analysis to predict the starting of the engine and the instability problem which leads to the steady-state behaviour. The centre manifold-normal form theory is used to obtain the simplest expression for the limit cycle amplitudes. The approach allows the reduction of the number of equations of the original system in order to obtain a simplified system, without loosing the dynamics of the original system as well as the contributions of nonlinear terms. The model intends to be used as a semi-analytical design tool for the optimization of miniaturized Stirling machines from the starting to the steady operation.
机译:本文介绍了致力于小型化膜式斯特林发动机运行的研究工作。实际上,这种发动机依靠两个膜的运动的动态耦合来实现原动力斯特林热力学循环。该系统的建模引入了膜的大振幅,以及与发动机内流体流动相关的非线性耗散效应。非线性表示为具有二次项和三次项的多项式函数。本文显示了稳定性分析,以预测发动机的启动和导致稳态行为的不稳定性问题。中心流形-法线形式理论用于获得极限环振幅的最简单表达式。该方法允许减少原始系统的方程数量,以便获得简化的系统,而不会失去原始系统的动力学以及非线性项的贡献。该模型打算用作从启动到稳定运行优化小型斯特林机器的半分析设计工具。

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