ECOLOGICAL SYSTEM IN THE CIRCULAR ECONOMY MODEL

V. Roleders
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Abstract

The purpose of the article is to model the ecological system in the circular economy model. To realize the goal, the method of mathematical modeling was used when creating models of the ecological system. It is proposed to understand under the ecological system the logistics system as a set of elements-links interconnected in the process of managing the movement of direct and reverse logistics flows, which takes into account the eco-destructive impact on the environment. An ecological system, like any system, has the following properties: integrity, divisibility, organization, structuredness, integrability, emergentity, purposefulness. In addition, the ecological system has properties typical for the logistics system: complexity, openness, stochasticity, heterogeneity and multifunctionality, dynamism and adaptability. The ecological system also has specific characteristics: environmental friendliness, closedness. The ecological system is considered at the micro, meso and macro levels.  At the micro level, the elements of the ecological system are the functional units of the organization's logistics, including the unit responsible for reverse logistics. At the meso- and macro-levels, the ecological system is represented by the enterprises - participants of the logistics chain. The analysis of logistics specialists research allowed us to identify the following approaches to modeling the ecological chain: organizational, flow, process. The main difference between the approaches is the understanding of the essence of the chain and the elements that make it up. A necessary condition for the successful functioning of the ecological chain is the coordination of the principles of process and flow approaches. It is proposed to form chains of processes according to the direction of flow. In this case, the logistics process is considered as an element of the value creation process. Ecological system modeling based on the use of the reverse logistics model was improved, which covers not only the collection and transportation of materials and goods, but also value-added activities such as testing, sorting, recovery, recycling and redistribution and is a major factor contributing to the expansion of implementation approaches to the circular economy in various branches of the national economy.
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循环经济模式中的生态系统
本文旨在建立循环经济模式下的生态系统模型。为了实现这一目标,在创建生态系统模型时采用了数学建模的方法。建议在生态系统下将物流系统理解为在管理直接和逆向物流流动过程中相互关联的一系列元素--环节,其中考虑到了对环境的生态破坏性影响。生态系统与其他系统一样,具有以下特性:完整性、可分性、组织性、结构性、可集成性、突发性、目的性。此外,生态系统还具有物流系统的典型特性:复杂性、开放性、随机性、异质性和多功能性、动态性和适应性。生态系统还具有特定的特征:环境友好性、封闭性。生态系统分为微观、中观和宏观三个层次。 在微观层面,生态系统的要素是组织物流的功能单元,包括负责逆向物流的单元。在中观和宏观层面,生态系统的代表是企业--物流链的参与者。通过对物流专家研究的分析,我们确定了以下几种生态链建模方法:组织、流程、过程。这些方法的主要区别在于对链的本质和构成链的要素的理解。生态链成功运作的必要条件是协调流程和流动方法的原则。建议按照流程方向形成流程链。在这种情况下,物流过程被视为价值创造过程的一个要素。在使用逆向物流模型的基础上改进了生态系统模拟,这不仅包括材料和货物的收集和运输,还包括检测、分类、回收、再循环和再分配等增值活动,是有助于在国民经济各部门扩大循环经济实施办法的一个重要因素。
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