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Coupling Variable Renewable Electricity Production to the Heating Sector through Curtailment and Power-to-heat Strategies for Accelerated Emission Reduction

机译:通过缩减和电力 - 热策略对加热部门进行加热部门的可变可再生电力,以加速减排

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摘要

The Paris Climate Accord and recent IPCC analysis urges to strive towards carbon neutrality by the middle of this century. As most of the end-use energy in Europe is for heating, or well above 60%, these targets will stress more actions in the heating sector. So far, much of the focus in the emission reduction has been on the electricity sector. For instance, the European Union has set as goal to have a carbon-free power system by 2050. Therefore, the efficient coupling of renewable energy integration to heat and heating will be part of an optimal clean energy transition. This paper applies optimization-based energy system models on national (Finland) and sub-national level (Helsinki) to include the heating sector in an energy transition. The models are based on transient simulation of the energy system, coupling variable renewable energies (VRE) through curtailment and power-to-heat schemes to the heat production system. We used large-scale wind power schemes as VRE in both cases. The results indicate that due to different energy system limitations and boundary conditions, stronger curtailment strategies accompanied with large heat pump schemes would be necessary to bring a major impact in the heating sector through wind power. On a national level, wind-derived heat could meet up to 40% of the annual heat demand. On a city level, the use of fossil fuel in combined heat and power production (CHP), typical for northern climates, could significantly be reduced leading even close to 70% CO2 emission reductions in Helsinki. Though these results were site specific, they indicate major opportunities for VRE in sectoral coupling to heat production and hence also a potential role in reducing the emissions.
机译:巴黎气候协议和最近的IPCC分析敦促在本世纪中叶争取碳中立。由于欧洲的大部分最终使用能量是加热,或远高于60%,这些目标将在加热部门压力更多的行动。到目前为止,减排的大部分焦点一直在电力部门。例如,欧盟已成为2050年将无碳电力系统的目标设定为目标。因此,可再生能源集成到热量和加热的有效耦合将是最佳清洁能源过渡的一部分。本文适用于国家(芬兰)和亚国家一级(赫尔辛基)的基于优化的能源系统模型,以便在能源转型中包括加热部门。该模型基于能量系统的瞬态仿真,通过缩减和热量方案到热量生产系统的可变可再生能量(VRE)。我们在这两种情况下使用了大规模的风电表。结果表明,由于能量系统的限制和边界条件不同,伴随着大型热泵方案的强制缩减策略是必要的,以通过风力发动加热部门对加热部门产生重大影响。在国家一级,风力源性最高可达年度热量需求的40%。在一个城市一级,在北部气候中使用化石燃料(ChP),典型的典型气候,可能会显着降低赫尔辛基的70%二氧化碳排放减少。虽然这些结果是特定的现场,但它们表明在持部队耦合到热量生产中的主要机会,因此在减少排放方面也具有潜在作用。

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