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Analysis of the influence of Thermal Energy Storage on the Optimal Management of a Trigeneration Plant

机译:热能存储对三联产电厂优化管理的影响分析

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摘要

Safety, security, and sustainability of energy supply chains are among the main concerns of industrialized countries, and, therefore, distributed generation has significantly increased its share of the energy market, thanks to the possibility to simultaneously meet electrical, thermal and cooling demand, thus increasing the overall source-to-final-use conversion efficiency. The efficiency of a distributed generation system is influenced both by the individual performance of the plant components as well as by their interconnection, and is very sensitive to the control strategy adopted in the different plant sections. This last remark is particularly relevant for distributed generation systems, that are subject to rapid gradients in both the thermal and electrical loads, and in the values of the energy vector. In this respect, the introduction and the correct management of energy storage systems is a key point for trigeneration plants. In fact, energy storage brings on the one side advantages as for the reduced components sizes, but more importantly allows for a substantial decoupling of the thermal and electrical demands, making load following less of a stringent requirement. An optimization methodology, based on energy fluxes simulation, and on the application of the graph theory as in previous works by some of the authors, is used to identify the optimal set-points for each component. The optimization algorithm searches for the plant management envelope that minimizes a prescribed objective function. Specifically, two different optimization criteria are considered: i) economic optimization that minimizes the total daily operating cost and ii) primary energy use optimization, that minimizes the total daily amount of primary energy used by the plant. Since the paper focus is on the effects of energy storage, the trigeneration plant behavior will be analyzed both in terms of economical results and in terms of efficiency and primary energy use.
机译:能源供应链的安全性,安全性和可持续性是工业化国家关注的主要问题,因此,分布式发电极大地增加了其在能源市场中的份额,这是由于可以同时满足电力,热力和制冷需求,因此提高了从源到最终的整体转换效率。分布式发电系统的效率既受工厂组件的单个性能及其互连的影响,又对不同工厂部分采用的控制策略非常敏感。最后一句话与分布式发电系统特别相关,因为分布式发电系统在热负荷和电负荷以及能量矢量的值上都会经历快速的梯度变化。在这方面,储能系统的引入和正确管理是三代发电厂的关键点。实际上,储能带来了一方面的优点,即减小了部件尺寸,但更重要的是,它允许热和电的需求充分分离,从而使负载遵循的要求不再那么严格。一种基于能量通量模拟的优化方法,以及一些作者先前在图论中的应用,用于确定每个组件的最佳设定点。优化算法搜索最小化规定目标函数的工厂管理范围。具体而言,考虑了两个不同的优化标准:i)使每日总运营成本最小化的经济优化; ii)一次能源使用优化,使工厂每天使用的一次能源总量最小化。由于本文的重点是储能的效果,因此将从经济结果,效率和一次能源使用方面分析三代发电厂的行为。

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