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Enhancing Power System Flexibility Through District Heating - Potential Role in the Italian Decarbonisation

机译:通过区域供热提高电力系统的灵活性-在意大利脱碳中的潜在作用

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Decarbonized energy systems of the next future will see big shares of photovoltaic and wind. Such shares of fluctuating sources will need flexibility, on both the supply and demand sides. According to the Italy's draft National Energy and Climate Plan, in 2030 the flexibility of the national power system will mainly come from increased electricity storage capacity and smart charge of electric vehicles. In this paper we study the potential of district heating as a further option. Through a simulation model, we analyse how district heating would interact with the Italian power system if part of the heat generation is based on an intelligent and controlled use of electricity. Results show that, depending on the installed capacity of power-to-heat generation and on the heat storage capacity, district heating can accommodate overgeneration to a relatively modest but interesting extent. This preliminary analysis suggests that the potential of district heating should be considered as a possible option.
机译:未来的脱碳能源系统将在光伏和风能领域占有很大份额。波动源的这种份额在供需双方都将需要灵活性。根据意大利的《国家能源和气候计划》草案,到2030年,国家电力系统的灵活性将主要来自于电动汽车的蓄电能力和智能充电能力的提高。在本文中,我们研究了区域供热作为另一种选择的潜力。通过模拟模型,我们分析了如果部分热量的产生是基于智能和可控的电力使用,那么区域供热将如何与意大利的电力系统相互作用。结果表明,根据发电装机容量和储热容量,区域供热可以在相对适度但有趣的范围内适应过剩发电。初步分析表明,应将区域供热的潜力视为一种可能的选择。

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