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Introduction to the focus issue: Chemo-Hydrodynamic patterns and instabilities

机译:焦点问题简介:化学水动力模式和不稳定性

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Pattern forming instabilities are often encountered in a wide variety of natural phenomena and technological applications, from self-organization in biological and chemical systems to oceanic or atmospheric circulation and heat and mass transport processes in engineering systems. Spatio-temporal structures are ubiquitous in hydrodynamics where numerous different convective instabilities generate pattern formation and complex spatiotemporal dynamics, which have been much studied both theoretically and experimentally. In parallel, reaction-diffusion processes provide another large family of pattern forming instabilities and spatio-temporal structures which have been analyzed for several decades. At the intersection of these two fields, "chemo-hydrodynamic patterns and instabilities" resulting from the coupling of hydrodynamic and reaction-diffusion processes have been less studied. The exploration of the new instability and symmetry-breaking scenarios emerging from the interplay between chemical reactions, diffusion and convective motions is a burgeoning field in which numerous exciting problems have emerged during the last few years. These problems range from fingering instabilities of chemical fronts and reactive fluid-fluid interfaces to the dynamics of reaction-diffusion systems in the presence of chaotic mixing. The questions to be addressed are at the interface of hydrodynamics, chemistry, engineering or environmental sciences to name a few and, as a consequence, they have started to draw the attention of several communities including both the nonlinear chemical dynamics and hydrodynamics communities. The collection of papers gathered in this Focus Issue sheds new light on a wide range of phenomena in the general area of chemo-hydrodynamic patterns and instabilities. It also serves as an overview of the current research and state-of-the-art in the field.
机译:从生物和化学系统中的自组织到海洋或大气环流以及工程系统中的热和质输运过程,在各种自然现象和技术应用中经常会遇到图案形成不稳定性的情况。时空结构在流体力学中无处不在,其中许多不同的对流不稳定性产生模式形成和复杂的时空动力学,这在理论上和实验上都得到了大量研究。同时,反应扩散过程提供了另一类大范围的图案形成不稳定性和时空结构,已经分析了数十年。在这两个领域的交汇处,对由水动力和反应扩散过程耦合产生的“化学-水动力模式和不稳定性”的研究较少。从化学反应,扩散和对流运动之间的相互作用中探索出新的不稳定和对称性破裂的情况是一个新兴领域,在过去的几年中出现了许多令人兴奋的问题。这些问题的范围从化学前沿和反应性流体界面的指状不稳定性到在存在混沌混合的情况下反应扩散系统的动力学。要解决的问题仅举几例,涉及流体力学,化学,工程学或环境科学,因此,它们开始引起包括非线性化学动力学和流体力学在内的多个社区的关注。在本期焦点期刊中收集的论文集为化学流体动力学模式和不稳定性的一般领域中的各种现象提供了新的启示。它还概述了该领域的最新研究和最新技术。

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