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Generalized Thermodynamic Optimization for Iron and Steel Production Processes: Theoretical Exploration and Application Cases

机译:钢铁生产过程的广义热力学优化:理论探索与应用案例

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Combining modern thermodynamics theory branches, including finite time thermodynamics or entropy generation minimization, constructal theory and entransy theory, with metallurgical process engineering, this paper provides a new exploration on generalized thermodynamic optimization theory for iron and steel production processes. The theoretical core is to thermodynamically optimize performances of elemental packages, working procedure modules, functional subsystems, and whole process of iron and steel production processes with real finite-resource and/or finite-size constraints with various irreversibilities toward saving energy, decreasing consumption, reducing emission and increasing yield, and to achieve the comprehensive coordination among the material flow, energy flow and environment of the hierarchical process systems. A series of application cases of the theory are reviewed. It can provide a new angle of view for the iron and steel production processes from thermodynamics, and can also provide some guidelines for other process industries.
机译:结合现代热力学理论分支,包括有限时间热力学或熵产生最小化,构造理论和换能理论,与冶金过程工程相结合,为钢铁生产过程的广义热力学优化理论提供了新的探索。理论上的核心是热动力学优化元素包装,工作程序模块,功能子系统以及钢铁生产过程的整个过程的性能,这些过程具有真实的有限资源和/或有限大小的约束,并且在节约能源,降低能耗,减少排放,提高产量,实现分级工艺系统的物料流,能量流与环境的全面协调。回顾了该理论的一系列应用案例。它可以为钢铁生产过程提供热力学的新视角,也可以为其他过程工业提供一些指导。

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