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Optimal design and operation of an urban energy system applied to the Fiera Del Levante exhibition centre

机译:城市能源系统的优化设计与运行应用于Fiera del Levante展览中心

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To move from centralised fossil fuel-based energy systems, synergies between distributed renewable generation, storage and demand-side strategies can be exploited to lower environmental impact and costs. This paper proposes an optimisation model for the techno-economic assessment of energy management strategies with a short-term investment horizon aimed at business managers and decision-makers in the commercial sector. The main novelty is the selection of a combination of on-site technologies and peak shaving strategies to minimise energy costs under time-of-use electricity tariffs, and the adaptation of a general methodology for a specific socio-technical context under seasonal loads. The "Fiera del Levante" exhibition centre in the city of Bari is selected due to the high seasonality of its electricity demand. The optimal solution uses a combined system with photovoltaics, diesel-fired and gas-fired combined-heat-and-power, including part-load operation and electric storage. The cost minimisation scenario reports up to 20% cost savings and 35% carbon emission savings with a 1MWp photovoltaic plant, compared to the baseline. This presents a five-year return on investment of 75%, and levelized cost of energy of (sic)0.14 kWh(-1). When coupled with a lithium-ion battery, solar energy brings up to 60% carbon emission savings through load shifting strategies, though this reduces the five-year return on investment by 9%. This hybrid setup is not financially competitive in the Italian retail market, but a hypothetical 25% rise of the grid import prices would make it economically viable. The proposed model is flexible and can be adapted to commercial end-users, providing decision-support in urban energy systems under local conditions.
机译:为了从集中式化石燃料的能源系统中移动,可以利用分布式可再生生成,存储和需求方策略之间的协同作用来降低环境影响和成本。本文提出了对商业管理人员和决策者的短期投资地平线的能源管理战略技术经济评估优化模型。主要的新颖性是选择现场技术和峰值剃须策略的组合,以最大限度地减少使用时间的电力关税的能源成本,以及在季节性载荷下对特定社会技术背景的一般方法的适应。由于其电力需求的高季节性,“Fiera del Levante”展览中心在巴里市中心。最优解决方案采用具有光伏,柴油和燃气组合 - 热电电源的组合系统,包括部件负载操作和蓄电池。与基线相比,成本最小化方案报告高达20%的成本节省和35%的碳排放量,与1MWP光伏厂。这提出了五年的投资回报率为75%,稳定的能量成本(SIC)0.14千瓦时(-1)。当加上锂离子电池时,太阳能通过负载转移策略带来了高达60%的碳排放量,尽管这降低了5年的投资回报率为9%。这种混合设置在意大利零售市场中没有经济上具有竞争力,但网格进口价格的假设25%升幅会使经济可行。该拟议模型是灵活的,可以适应商业终端用户,在城市能源系统下在当地条件下提供决策支持。

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