ESProNet: A Model Library for the Dynamic Simulation of Industrial Symbiosis

Martin Maiwald, Linda Kosmol, C. Pieper, T. Schmidt
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引用次数: 2

Abstract

One approach to a more sustainable industry is the reuse of waste and by-products. In particular, the exchange of resources between companies and the reuse of energy are considered critical, as they are time-dependent and may require technical or organizational changes to the production system leading to new interdependencies between the companies. Simulation is a suitable tool for analyzing the dynamic behavior of production systems to identify and evaluate critical factors and risks with regard to compatibility or feasibility, necessary changes and their effects on the system. This paper presents a modeling and simulation approach for resource reuse and exchange in the context of industrial symbiosis. To distinguish the proposed method from related work, an overview of existing modeling and simulation approaches is presented. The suggested approach is based on the modeling language Modelica. A custom model library with reusable preconfigured model elements is developed to model and simulate different production systems and scenarios bottom-up and modularly and in order to investigate interactions between resource providers and consumers. The conceptual and mathematical development of the model components and their interaction principles are presented and demonstrated. Based on this, organizational interdependencies and their economic and ecological impacts can be analyzed.
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基于ESProNet的工业共生动态仿真模型库
一个更可持续发展的工业的方法是废物和副产品的再利用。特别是,公司之间的资源交换和能源的再利用被认为是至关重要的,因为它们是有时间依赖性的,可能需要对生产系统进行技术或组织变革,从而导致公司之间新的相互依赖关系。仿真是分析生产系统动态行为的合适工具,用于识别和评估与兼容性或可行性、必要变更及其对系统的影响有关的关键因素和风险。本文提出了一种工业共生环境下资源再利用与交换的建模与仿真方法。为了将所提出的方法与相关工作区分开来,对现有的建模和仿真方法进行了概述。建议的方法基于建模语言Modelica。开发了一个带有可重用预配置模型元素的自定义模型库,以自底向上和模块化的方式建模和模拟不同的生产系统和场景,并研究资源提供者和消费者之间的交互。提出并演示了模型组件的概念和数学发展及其交互原理。在此基础上,可以分析组织相互依赖及其经济和生态影响。
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