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Optimal schedule adjustments for supplying ready mixed concrete following incidents

机译:事故发生后供应预拌混凝土的最佳时间表调整

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In this study, the authors develop a systematic network flow model designed to help RMC carriers effectively adjust schedules following RMC mixer breakdowns. A time-space network technique is employed to formulate the production of the RMC and truck fleet flows in the dimensions of time and space. A solution algorithm, incorporating a problem decomposition technique and the use of a mathematical programming solver, is developed to efficiently solve the problem. Finally, the model and solution method are evaluated by performing a case study. The test results show that, with the application of the model and the solution algorithm, mixer breakdowns do not lead to much deterioration in the system operating performance. In addition, the system operating cost is significantly improved (by 10.75 %) compared to that obtained using the manual approach. As a result, the model and the solution algorithm could be useful for actual operations.
机译:在这项研究中,作者开发了系统的网络流量模型,旨在帮助RMC运营商在RMC混频器故障后有效地调整时间表。时空网络技术被用来制定RMC的生产和卡车车队在时间和空间维度上的流动。开发了一种结合了问题分解技术和数学编程求解器的求解算法,可以有效地解决问题。最后,通过进行案例研究来评估模型和求解方法。测试结果表明,通过模型和求解算法的应用,混频器故障不会导致系统运行性能大幅下降。此外,与使用手动方法获得的系统运行成本相比,该系统的运行成本显着提高(降低了10.75%)。结果,该模型和求解算法可能对实际操作有用。

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