基于双层规划的电力生产与水资源管理耦合模型研究
发布时间:2019-06-21 12:57
【摘要】:火力发电作为耗能和耗水大户,对经济发展和环境保护具有重要影响,因此综合管理能源与水资源逐渐成为电力系统规划所关注的焦点。在兼顾经济因素和节水要求的前提下,采用双层规划方法对新疆巴州火电生产与水资源管理进行综合优化,其中上层模块以电力生产所需水量为目标,下层模块以电力生产管理经济成本为目标。通过对比双层和单层模型的优化结果,获得在节水降本前提下的电力生产、扩容方案、发电耗水及污染排放的最优方案。
[Abstract]:Thermal power generation, as a major consumer of energy and water consumption, has an important impact on economic development and environmental protection, so integrated management of energy and water resources has gradually become the focus of power system planning. On the premise of taking into account economic factors and water saving requirements, the bilevel programming method is used to optimize the thermal power production and water resources management in Bazhou, Xinjiang. The upper module aims at the water demand of electric power production, and the lower module aims at the economic cost of power production management. By comparing the optimization results of double layer model and single layer model, the optimal scheme of power production, capacity expansion, water consumption and pollution discharge under the premise of saving water and reducing cost is obtained.
【作者单位】: 华北电力大学区域能源系统优化教育部重点实验室;北京师范大学环境学院;
【基金】:中央高校基本科研业务费专项资金(2015XS97)
【分类号】:TM715;TV213.4
本文编号:2504094
[Abstract]:Thermal power generation, as a major consumer of energy and water consumption, has an important impact on economic development and environmental protection, so integrated management of energy and water resources has gradually become the focus of power system planning. On the premise of taking into account economic factors and water saving requirements, the bilevel programming method is used to optimize the thermal power production and water resources management in Bazhou, Xinjiang. The upper module aims at the water demand of electric power production, and the lower module aims at the economic cost of power production management. By comparing the optimization results of double layer model and single layer model, the optimal scheme of power production, capacity expansion, water consumption and pollution discharge under the premise of saving water and reducing cost is obtained.
【作者单位】: 华北电力大学区域能源系统优化教育部重点实验室;北京师范大学环境学院;
【基金】:中央高校基本科研业务费专项资金(2015XS97)
【分类号】:TM715;TV213.4
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