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Improvement of RMC delivery operation performance through inventory control based on discrete event simulation

机译:通过基于离散事件模拟的库存控制来提高RMC交付运营绩效

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摘要

As a highly demand construction material, ready-mixed concrete (RMC) is a common commodity in the construction industry. Because of its inherent characteristics and strict quality requirements, the production, delivery and placement process of RMC is a topic of interests to both contractors and material suppliers. Among the factors affecting the RMC supply performance, the dispatching schedule of delivery trucks has a direct effect on the total operation time and queuing time. The primary obstacles in determining optimal dispatching intervals are uncertainties in traffic and unloading activity. To offset the negative impacts of these uncertainties, it is important to set an inventory of delivery trucks in the supply chain is necessary. However, although inventory can ensure continuity, it can also lead to waste to a certain extent. Therefore, finding a cost-effective inventory control mode is necessary to improve the performance of the supply chain.This thesis develops a model where inventory control policies working on an RMC delivery process with the aim of optimizing the supply chain from the perspectives of both the contractor and supplier. This model will: (1) maintain the continuous work, (2) reduce the wasted time at the construction site, and (3) allocate trucks more efficiently. Data collection and implementation are based on a major building project in United Arab Emirates which required large amount of RMC. And the observed process consists of 502 RMC delivery cycles. On the basis of original model, two control policies are implemented in the model and compared in terms of their impact on process behaviour. The discrete event simulation (DES) model results illustrate the advantages of flexible dispatching intervals provided by fixed-quantity inventory control policy including maintaining continuous work and reducing waste. An alternative solution to the queuing problem is also discussed by comparing queuing model outputs to discrete event simulation outputs. The results show that the queuing model fails to provide an accurate estimation of queuing statues when managerial actions are involved. The decision makers, plant managers, and contractors could potentially take advantage of the findings of this thesis to better understand and manage their supply chain.
机译:作为高需求的建筑材料,预拌混凝土(RMC)是建筑行业中的常见商品。由于RMC的固有特性和严格的质量要求,RMC的生产,交付和安置过程成为承包商和材料供应商共同关心的话题。在影响RMC供应性能的因素中,送货卡车的调度时间表直接影响总运营时间和排队时间。确定最佳调度间隔的主要障碍是交通和卸货活动的不确定性。为了抵消这些不确定性带来的负面影响,必须在供应链中设置送货卡车的库存非常重要。但是,尽管库存可以确保连续性,但也可能在一定程度上导致浪费。因此,找到一种具有成本效益的库存控制模式对于改善供应链的绩效是必要的。本文建立了一个模型,在该模型中,在RMC交付过程中使用库存控制策略,旨在从两个方面优化供应链。承包商和供应商。该模型将:(1)保持连续工作,(2)减少施工现场的浪费时间,(3)更有效地分配卡车。数据收集和实施基于阿拉伯联合酋长国的一个大型建筑项目,该项目需要大量的RMC。并且观察到的过程包括502个RMC交付周期。在原始模型的基础上,在模型中实施了两个控制策略,并比较了它们对过程行为的影响。离散事件模拟(DES)模型结果说明了固定数量库存控制策略提供的灵活调度间隔的优势,包括维持连续工作和减少浪费。通过将排队模型输出与离散事件模拟输出进行比较,还讨论了排队问题的另一种解决方案。结果表明,当涉及管理行为时,排队模型无法提供对排队状态的准确估计。决策者,工厂经理和承包商可以利用本论文的发现来更好地理解和管理他们的供应链。

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