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Emergency material allocation with time-varying supply-demand based on dynamic optimization method for river chemical spills

机译:基于河化工泄漏的动态优化方法,用时变供应的应急材料分配

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摘要

Aiming to minimize the damage caused by river chemical spills, efficient emergency material allocation is critical for an actual emergency rescue decision-making in a quick response. In this study, an emergency material allocation framework based on time-varying supply-demand constraint is developed to allocate emergency material, minimize the emergency response time, and satisfy the dynamic emergency material requirements in post-accident phases dealing with river chemical spills. In this study, the theoretically critical emergency response time is firstly obtained for the emergency material allocation system to select a series of appropriate emergency material warehouses as potential supportive centers. Then, an enumeration method is applied to identify the practically critical emergency response time, the optimum emergency material allocation and replenishment scheme. Finally, the developed framework is applied to a computational experiment based on south-to-north water transfer project in China. The results illustrate that the proposed methodology is a simple and flexible tool for appropriately allocating emergency material to satisfy time-dynamic demands during emergency decision-making. Therefore, the decision-makers can identify an appropriate emergency material allocation scheme in a balance between time-effective and cost-effective objectives under the different emergency pollution conditions.
机译:旨在最大限度地减少河流化学泄漏造成的损害,有效的应急材料分配对于快速反应的实际紧急救援决策至关重要。在本研究中,开发了一种基于时变供需约束的应急材料分配框架来分配应急材料,最小化应急响应时间,并满足交易河化工泄漏的事故阶段的动态应急材料要求。在本研究中,首先为应急材料分配系统获得理论上关键的应急响应时间,以选择一系列适当的应急材料仓库作为潜在的支持中心。然后,应用枚举方法来识别实际关键的应急响应时间,最佳的应急材料分配和补充方案。最后,发达的框架应用于中国南北水转移项目的计算实验。结果说明所提出的方法是一种简单且灵活的工具,用于适当地分配应急材料,以满足紧急决策期间满足时间动态需求。因此,决策者可以在不同紧急污染条件下的时间有效和成本效益的目标之间的平衡中确定适当的应急材料分配方案。

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