三维非线性池沸腾中不稳定沸腾状态的模态控制

Van Gils, M. Speetjens, H. Zwart, H. Nijmeijer
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引用次数: 0

摘要

题目是三维空间非线性池沸系统的反馈稳定。其不稳定(非均匀)平衡的调节在微电子冷却和热管理系统中具有很大的应用潜力。在这里,作为第一步,考虑这种三维平衡的稳定性。根据加热器内部温度分布的傅里叶-切比雪夫模式,设计了调节加热器热量供应的控制律。这允许一个控制器,是量身定制的系统动力学,因为这些模式密切相关的物理特征模式。内部温度分布与实际情况类似,由观察者从加热器表面上有限数量的测量位置估计。通过对非线性闭环系统的仿真,验证并分析了该基于输出的模态控制器的性能。这为所提出的三维沸腾状态调节控制策略的原理提供了第一个证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modal control of unstable boiling states in three-dimensional nonlinear pool-boiling
Topic is feedback stabilisation of a nonlinear pool-boiling system in three spatial dimensions (3D). Regulation of its unstable (non-uniform) equilibria has great potential for application in micro-electronics cooling and thermal-management systems. Here, as a first step, stabilisation of such 3D equilibria is considered. A control law is designed that regulates the heat supply to the heater as a function of the Fourier-Chebyshev modes of its internal temperature distribution. This admits a controller that is tailored to the system dynamics, as these modes intimately relate to the physical eigenmodes. The internal temperature distribution is, similar to practical situations, estimated from a finite number of measurement positions on the heater surface by an observer. Performance of this output-based modal controller is demonstrated and analysed by simulations of the nonlinear closed-loop system. This provides first proof of principle of the proposed control strategy for the regulation of 3D boiling states.
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