Programmable Process Structure Based Analysis of Hydrogen Supply Chains

M. Varga, C. Azzaro‐Pantel, José Manuel Flores-Perez, B. Csukás
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引用次数: 2

Abstract

The planning and operation of Hydrogen Supply Chains (HSC) often require easily extensible, generic dynamic simulation tools. In this paper, the non-conventional modeling and simulation methodology of Programmable Process Structures is applied for the description of these process systems. Programmable Process Structures of HSC models are generated from the two general functional meta-prototypes of the method and from the description of the studied HSC network. The actual program prototypes of production, transformation, transportation, utilization and intermediate storage are copied from the meta-prototypes and filled with the locally executable declarative program code for the various classes of elements. The actual state and transition elements are parameterized and initialized according to their case-specific prototypes. The execution of the programmed HSC structures is solved by the general purpose kernel program. The application of methodology, developed in other fields, is illustrated by a fictitious, simplified HSC example. Analysis of this example model illustrates that the coordination of the hectically changing energy production of renewable resources with its seasonally and tendentiously changing demands is in need of dynamic simulation-based planning.
基于可编程过程结构的氢供应链分析
氢供应链(HSC)的规划和运行通常需要易于扩展的通用动态仿真工具。本文采用可编程过程结构的非常规建模与仿真方法对这些过程系统进行了描述。根据该方法的两个通用功能元原型和所研究的HSC网络的描述,生成HSC模型的可编程过程结构。生产、转换、传输、利用和中间存储的实际程序原型是从元原型中复制的,并填充了用于各种元素类的本地可执行的声明性程序代码。实际的状态和转换元素根据它们特定于案例的原型进行参数化和初始化。编程的HSC结构的执行由通用内核程序解决。方法的应用,发展在其他领域,是通过一个虚构的,简化HSC的例子说明。实例模型分析表明,动态变化的可再生能源发电量与其季节性、倾向性变化的需求之间的协调需要基于动态仿真的规划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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