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Modeling of thermodynamically coupled reaction-transport systems

机译:热力学耦合反应传输系统的建模

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Nonisothermal reaction-diffusion systems control the behavior of many transport and rate processes in physical, chemical and biological systems, such as pattern formation and chemical pumps. Considerable work has been published on mathematically coupled nonlinear differential equations by neglecting thermodynamic coupling between a chemical reaction and transport processes of mass and heat. This study presents the modeling of thermodynamically coupled system of a simple elementary chemical reaction with molecular heat and mass transport. The thermodynamic coupling refers that a flow occurs without or against its primary thermodynamic driving force, which may be a gradient of temperature or chemical potential or reaction affinity. The modeling is based on the linear nonequilibrium thermodynamics approach by assuming that the system is in the vicinity of global equilibrium. The modeling equations lead to unique definitions of cross-coefficients between a chemical reaction and heat and mass flows in terms of kinetic parameters, transport coefficients and degrees of coupling. These newly defined parameters need to be determined to describe some coupled reaction-transport systems. Some methodologies are suggested for the determination of the parameters and some representative numerical solutions for coupled reaction-transport systems are presented.
机译:非等温反应扩散系统控制物理,化学和生物系统中许多传输和速率过程的行为,例如图案形成和化学泵。通过忽略化学反应与质量和热量的传输过程之间的热力学耦合,在数学耦合的非线性微分方程上已经发表了大量工作。这项研究提出了具有分子热和质量传递的简单基本化学反应的热力学耦合系统的建模。热力学耦合是指在没有或没有其主要热力学驱动力的情况下发生流动,该热力学驱动力可以是温度或化学势或反应亲和力的梯度。建模基于线性非平衡热力学方法,假设系统位于全局平衡附近。建模方程式根据动力学参数,传输系数和耦合度,对化学反应与热和质量流之间的交叉系数做出了独特的定义。需要确定这些新定义的参数来描述一些耦合的反应-传输系统。提出了一些用于确定参数的方法,并给出了耦合反应-传输系统的一些代表性数值解。

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