随机波动如何在连续搅拌槽式反应器中产生和抑制复杂的振荡状态

IF 1.9 4区 工程技术 Q4 ENERGY & FUELS Combustion Theory and Modelling Pub Date : 2023-04-27 DOI:10.1080/13647830.2023.2206379
I. Bashkirtseva, L. Ryashko
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引用次数: 0

摘要

受重要化学工程应用的启发,我们研究了连续搅拌釜反应器随机强迫模型中随机效应的概率机制。确定性模型的分岔分析揭示了平衡态和振荡态共存的双稳态参数区。结果表明,随着分叉参数的变化,这些区域盆地之间的边界是移动的。我们研究了噪声引起的跨越该边界的跃迁,该跃迁导致尖峰振荡的随机产生以及噪声引起的大幅度尖峰抑制的反向效应。在研究这些随机效应时,我们使用了从直接数值模拟中提取的统计数据,以及使用置信椭圆法的分析方法。揭示并讨论了相干共振的一个重要概率现象。
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How random fluctuations can generate and suppress complex oscillatory regimes in continuous stirred tank reactors
Motivated by important chemical engineering applications, we study probabilistic mechanisms of stochastic effects in a randomly forced model of the continuous stirred tank reactor. The bifurcation analysis of the deterministic model reveals the parameter zone of bistability with coexistence of the equilibrium and oscillatory regimes. It is shown that the boundary between basins of these regimes is moving as the bifurcation parameter changes. We study noise-induced transitions across this boundary leading to the stochastic generation of spiking oscillations and backward effect of the noise-induced suppression of large-amplitude spiking. In the study of these stochastic effects, we use statistics extracted from the direct numerical simulation, and an analytical approach using confidence ellipses method. An important probabilistic phenomenon of coherence resonance is revealed and discussed.
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来源期刊
Combustion Theory and Modelling
Combustion Theory and Modelling 工程技术-工程:化工
CiteScore
3.00
自引率
7.70%
发文量
38
审稿时长
6 months
期刊介绍: Combustion Theory and Modelling is a leading international journal devoted to the application of mathematical modelling, numerical simulation and experimental techniques to the study of combustion. Articles can cover a wide range of topics, such as: premixed laminar flames, laminar diffusion flames, turbulent combustion, fires, chemical kinetics, pollutant formation, microgravity, materials synthesis, chemical vapour deposition, catalysis, droplet and spray combustion, detonation dynamics, thermal explosions, ignition, energetic materials and propellants, burners and engine combustion. A diverse spectrum of mathematical methods may also be used, including large scale numerical simulation, hybrid computational schemes, front tracking, adaptive mesh refinement, optimized parallel computation, asymptotic methods and singular perturbation techniques, bifurcation theory, optimization methods, dynamical systems theory, cellular automata and discrete methods and probabilistic and statistical methods. Experimental studies that employ intrusive or nonintrusive diagnostics and are published in the Journal should be closely related to theoretical issues, by highlighting fundamental theoretical questions or by providing a sound basis for comparison with theory.
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