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Regional integrated energy system energy management in an industrial park considering energy stepped utilization

机译:考虑能源阶梯利用的工业园区区域综合能源系统能源管理

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摘要

There are multiple energy demands in industrial parks. The industrial park's energy system includes a variety of energy sources and energy-consuming equipment, with diverse load types and high reliability requirements for power supplies. And the situation of low energy utilization rates, unreasonable energy structures, great peak-to-valley power differences and the environment pollution needs to be improved. The application of multi-energy complementary regional integrated energy systems (RIES) can improve the performance of the industrial parks. Considering reasonable correspondence between the energy supply and demand in RIES, this paper proposes an RIES energy management strategy based on energy stepped utilization to further minimize the daily cost and make full use of the energy. Additionally, the piecewise linear model of gas turbine is established considering a part load ratio. According to the grade demands, the heat loads are divided into high-grade, middle-grade and low-grade heat loads and the load models are respectively established. The scenario reduction method is used to obtain typical scenarios in order to describe the randomness of weather factors. Finally, the simulation analysis shows that the proposed energy management method for the RIES can arrange the combination of gas turbines and output of devices more flexibly, and a more economical scheduling plan can be provided by this method. The high-grade and middle-grade energy are not only supplied to corresponding loads, but also can be converted into low-grade energy. Additionally, the stability and energy efficiency of the system are improved with the application of this strategy.
机译:工业园区有多种能源需求。工业园的能源系统包括各种能源和消耗设备,具有多种负载类型和高电平的可靠性要求。和能量利用率低的情况,不合理的能量结构,大峰谷功率差异和环境污染需要得到改善。多能量互补区域综合能源系统(RIES)的应用可以提高工业园区的性能。本文考虑了合理的对应性能,本文提出了基于能源步进利用率的基于能源管理策略,以进一步降低日常成本并充分利用能量。另外,考虑零件负荷比建立了燃气轮机的分段线性模型。根据级别的要求,热负荷分为高档,中等等级和低级热负荷,分别建立了负荷模型。该场景减少方法用于获得典型方案,以描述天气因子的随机性。最后,仿真分析表明,该方法可以将燃气涡轮机和设备的输出的组合更加灵活地布置,并且可以通过该方法提供更经济的调度计划。高档和中等能量不仅提供给相应的负载,而且还可以转换成低级能量。另外,利用该策略的应用得到了改进了系统的稳定性和能量效率。

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