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Reservoir Management Using a Network Flow Optimization Model Considering Quadratic Convex Cost Functions on Arcs

机译:考虑弧上二次凸成本函数的网络流量优化模型进行储层管理

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The allocation of water resources between different users is a hard task for water managers because they must deal with conflicting objectives. The main objective is to obtain the most accurate distribution of the resource and the associated circulating flows through the system. This induces the need for a river basin optimization model that provides optimized results. This article presents a network flow optimization model to solve the water allocation problem in water resource systems. Managing a water system consists in providing water in the right proportion, at the right place and at the right time. Time expanded network allows to take into consideration the temporal dimension in the decision making. Since linear cost functions on arcs present many limitations and are not realistic, quadratic convex cost functions on arcs are considered here. The optimization algorithm developed herein extend the cycle canceling algorithm developed for linear cost functions. The methodology is applied to manage the three reservoirs of La Haute-Vilaine's watershed located in the north west of France to protect a three vulnerable areas from flooding. The results obtained with the algorithm are compared to a reference scenario which consists in considering reservoirs transparent. The results show that the algorithm succeeds in managing the reservoir releases efficiently and keeps the flow rates below the vigilance flow in the vulnerable areas.
机译:对于水资源管理者来说,在不同用户之间分配水资源是一项艰巨的任务,因为他们必须处理相互矛盾的目标。主要目的是获得最准确的资源分配以及通过系统的相关循环流量。这导致需要提供优化结果的流域优化模型。本文提出了一种网络流量优化模型来解决水资源系统中的水资源分配问题。管理供水系统包括在正确的位置,正确的时间以正确的比例提供水。时间扩展网络允许在决策中考虑时间维度。由于圆弧上的线性成本函数存在许多限制并且不切实际,因此此处考虑圆弧上的二次凸成本函数。本文开发的优化算法扩展了为线性成本函数开发的周期取消算法。该方法用于管理位于法国西北部的上豪维拉讷分水岭的三个水库,以保护三个脆弱地区免受洪水侵害。将通过该算法获得的结果与参考方案进行比较,该参考方案包括考虑储层透明。结果表明,该算法成功地有效地管理了油藏的释放,并使流速保持在脆弱地区的警戒线以下。

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