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首页> 外文期刊>Journal of Mechanical Science and Technology >Interpretation of coal gasification modeling in commercial process analysis simulation codes
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Interpretation of coal gasification modeling in commercial process analysis simulation codes

机译:煤气化模型在商业过程分析模拟代码中的解释

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摘要

The purpose of this study is to recognize modeling methods for coal combustion and gasification in commercial process analysis codes. Many users have appreciated the reliability of commercial process analysis simulation codes; however, it is necessary to understand the physical meaning and limitations of the modeling results. Modeling of coal gasification phenomena has been embodied in commercial process analysis simulators such as Aspen. Commercial code deals with modeling of the gasification system with a number of reactor blocks supported by the specific code, not as a coal gasifier. However, the primary purpose of using process analysis simulation code is to interpret the whole plant cycle rather than an individual unit such as a gasifier. Equilibrium models of a coal gasifier are generally adopted in the commercial codes, where the method of Gibbs free energy minimization of chemical species is applied at the given temperature and pressure. The equilibrium model of the coal gasifier, RGibbs, in commercial codes provides users with helpful information, such as exit syngas temperature, composition, flow rate, performance of coal gasifier model, etc. with various input and operating conditions. This simulation code is being used to generate simple and fast response of results. Limitations and uncertainties are interpreted in the view of the gasification process, chemical reaction, char reactivity, and reactor geometry. In addition, case studies are introduced with examples. Finally, a way to improve the coal gasifier model is indicated, and a kinetically modified model considering reaction rate is proposed.
机译:这项研究的目的是在商业过程分析代码中认识到煤燃烧和气化的建模方法。许多用户已经意识到商业流程分析仿真代码的可靠性;但是,有必要了解建模结果的物理含义和局限性。煤气化现象的模型已经体现在商业过程分析模拟器中,例如Aspen。商业法规涉及气化系统的建模,该气化系统具有由特定法规支持的许多反应堆,而不是作为煤气化炉。但是,使用过程分析模拟代码的主要目的是解释整个工厂周期,而不是解释单个单元(例如气化炉)。商业法典中通常采用煤气化炉的平衡模型,其中在给定的温度和压力下应用化学物质的吉布斯自由能最小化方法。商业代码中的煤气化炉平衡模型RGibbs为用户提供有用的信息,例如在各种输入和运行条件下的出口合成气温度,组成,流量,煤气化炉模型的性能等。该仿真代码用于生成简单快速的结果响应。从气化过程,化学反应,炭反应性和反应器几何形状的角度解释了局限性和不确定性。此外,还通过实例介绍了案例研究。最后,提出了一种改进煤气化炉模型的方法,并提出了一种考虑反应速率的动力学改进模型。

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