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首页> 外文期刊>Journal of Cleaner Production >A green closed loop supply chain design using queuing system for reducing environmental impact and energy consumption
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A green closed loop supply chain design using queuing system for reducing environmental impact and energy consumption

机译:使用排队系统的绿色闭环供应链设计,可减少对环境的影响和能耗

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Due to increased environmental impacts and their important role in human life, reduction of impacts made by human has attracted more attention, recently. Green supply chains are among the most effective issues related to environmental impacts and increased number of studies in this area verifies this opinion. Transportation fleets transfer products between supply chain's centers and are one of the important factors which increase environmental impacts. Transportation fleets which transfer products between supply chain's centers are one of the important factors which increase environmental impacts while transferring products between centers and waiting in loading queue. Decreasing environmental impacts which are created by transportation fleets, from this point of view, is not investigated comprehensively in forward and reverse logistic supply chains. In order to deal with this gap, in this article a green supply chain with forward and reverse logistic consideration is designed and queuing system is used to optimize the transportation and waiting time of transportation fleets' network. This optimization model will lead to the reduction in environmental impacts. Our network consists of supplier, production system, distribution center, repair center, recycling center, disposal center, and collection center. Returned products from customers are collected in the collection center and transferred to other centers based on their type. Transportation fleets in the network are assumed to be customers of loading system in each center where each of these loading systems has a multi-server queuing system with finite sources. It is assumed that a sufficient number of servers are available in unloading centers, therefore, no queue will exist there. The proposed model will reduce the created environmental impacts and energy consumption of transportation fleets by determining loading, unloading and production rates, which affect waiting and transportation time. A numerical example is discussed for the NLP model in small size and solved with the exact methods. In addition, a metaheuristics approach is employed to solve the large size of problem. Finally, the sensitivity analysis is performed to investigate the effects of change in parameters on model's decision variables and objective function. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于增加的环境影响及其在人类生活中的重要作用,减少人类造成的影响最近引起了更多关注。绿色供应链是与环境影响有关的最有效问题之一,该领域越来越多的研究证明了这一观点。运输车队在供应链中心之间转移产品,这是增加环境影响的重要因素之一。在供应链中心之间转移产品的运输车队是在中心之间转移产品并在装卸队列中等待时增加环境影响的重要因素之一。从这个角度来看,在正向和反向物流供应链中,运输车队造成的对环境影响的减少并未得到全面研究。为了解决这一差距,本文设计了一种具有正向和反向物流考虑的绿色供应链,并使用排队系统来优化运输队网络的运输和等待时间。这种优化模型将减少对环境的影响。我们的网络包括供应商,生产系统,配送中心,维修中心,回收中心,处置中心和收集中心。客户退回的产品将在收集中心收集,并根据其类型转移到其他中心。假定网络中的运输车队是每个中心的装载系统的客户,其中每个装载系统都有一个带有有限来源的多服务器排队系统。假定卸载中心中有足够数量的服务器可用,因此,那里没有队列。拟议的模型将通过确定影响等待和运输时间的装载,卸载和生产率,减少运输车队对环境造成的影响和能耗。讨论了一个小尺寸NLP模型的数值示例,并通过精确方法进行了求解。另外,采用元启发式方法来解决较大的问题。最后,进行敏感性分析以研究参数变化对模型的决策变量和目标函数的影响。 (C)2019 Elsevier Ltd.保留所有权利。

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