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首页> 外文期刊>Journal of Cleaner Production >Optimization of a regional energy system including CHP plants and local PV system and hydropower: Scenarios for the County of Vaestmanland in Sweden
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Optimization of a regional energy system including CHP plants and local PV system and hydropower: Scenarios for the County of Vaestmanland in Sweden

机译:优化包括热电联产电厂,当地光伏系统和水电在内的区域能源系统:瑞典韦斯特曼兰县的情景

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摘要

Providing the energy needs of the cumulatively increasing population has become a challenge for the regional energy systems in the world. The most critical challenge is to supply enough energy in the forms of heat and power during the cold and warm periods of the year with the lowest production cost and minimum environmental impacts. A solution is to increase the green energy supply from renewable energy resources such as solar, wind power, and hydropower. In order to apply this solution in the real energy system, potentials for clean energy supply in an optimized manner should be evaluated. In this study, an optimization model is developed for a regional energy system in the central part of Sweden. The studied system consists of Combined Heat and Power (CHP) plants and heat water boilers together with renewable energy supply from rooftop Photo Voltaic (PV) - solar collectors and regional hydropower plants. The General Algebraic Modeling System (GAMS) is used to create the model based on the Mixed Integer Linear Programming (MILP) method. The goal is to evaluate the influence of local renewable energy systems on the production planning of CHP plants in a region. Two different scenarios are investigated based on the extremes in energy supply and demand concerning the increased use of Electrical Vehicles (EV5) and more application of Heat Pumps (HPs) in the system. The results show that installation of rooftop PV systems has the potential to reduce the electricity import to the region; however, it will at the same time reduce the operation time of the CHP plans during the summer period. With increased use of HPs for heating, the shut off time for CHP plants is further increased. Increase in electric passenger cars penetration in the system has no impacts on the production profiles of the plants. The regional electricity demand grows significantly by more utilization of EVs and increased application of heat pumps in the studied system. The high electricity demand will mainly be satisfied by importing electricity from outside the region together with low production from CHP plants and the power generated by the rooftop PV systems and regional hydropower. The developed optimization model with studied scenarios can be applied to other energy systems to increase the knowledge of production planning and feasibility of a fossil fuel free energy system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提供不断增长的人口的能源需求已成为世界区域能源系统的一项挑战。最关键的挑战是在一年的寒冷和温暖时期以热能和电能的形式提供足够的能源,同时以最低的生产成本和对环境的影响最小。一种解决方案是增加可再生能源(例如太阳能,风能和水力发电)的绿色能源供应。为了将此解决方案应用到实际能源系统中,应评估以最佳方式提供清洁能源的潜力。在这项研究中,为瑞典中部的区域能源系统开发了一个优化模型。研究的系统由热电联产(CHP)电厂和热水锅炉以及屋顶光伏(PV)-太阳能收集器和区域水力发电厂的可再生能源组成。通用代数建模系统(GAMS)用于基于混合整数线性规划(MILP)方法创建模型。目的是评估当地可再生能源系统对一个地区热电联产工厂生产计划的影响。基于能源供需的极端情况,研究了两种不同的方案,这涉及电动车辆(EV5)的使用增加以及系统中热泵(HP)的更多应用。结果表明,安装屋顶光伏系统有可能减少该地区的电力进口。但是,它同时会减少夏季热电联产计划的运行时间。随着高压加热器的使用增加,热电联产设备的关闭时间进一步增加。电动乘用车在系统中的渗透率增加不会影响工厂的生产情况。通过更多地利用电动汽车和在研究系统中增加热泵的应用,区域电力需求将显着增长。高电力需求将主要通过从区域外部进口电力,热电联产电厂的低产量以及屋顶光伏系统和区域水电产生的电力来满足。具有研究情景的已开发优化模型可以应用于其他能源系统,以增加生产计划知识和无化石燃料能源系统的可行性。 (C)2019 Elsevier Ltd.保留所有权利。

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