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A method for evaluating building retrofit effects on a decentral energy system by a sector coupling operation and expansion model

机译:一种通过扇形耦合运行和扩展模型评估建筑改型对分散能源系统影响的方法

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摘要

The building sector has high untapped energy saving potential. The main tool to exploit this potential is conducting a building retrofit. Building retrofit does not only reduce the heat demand, but can cause peak shifting as well as major alternation in the technology requirements within a system. This paper presents the model DISTRICT-HP, which is developed as a novel methodology to quantify the system effects of building retrofit on a decentralized energy system. The paper includes a detailed description of the developed optimization model as well as an exemplary case study based on a German decentral energy system. Results show that the economic feasibility of building retrofit varies depending on the perspective of the investor. From a building owner’s point of view, retrofitting is a less economically attractive measure than from a system point of view. Depending on the system conditions, the resulting system including retrofitting can have lower cost than a system without retrofitting. Savings from the demand reduction as well as from a flexible operation can lead to an increase in the economic attractiveness of building retrofit. This effect is emphasized from a system perspective since the room for using the flexibility potential increases. The decrease in temperature levels resulting from retrofitting a building, add to that flexibility, as shown in the case study, a heat pump can produce low temperature heat with higher efficiency, which can be stored in low temperature and then heated up when required.
机译:建筑行业具有很高的尚未开发的节能潜力。挖掘这种潜力的主要工具是进行建筑物改造。建筑改造不仅会减少热量需求,而且还会导致峰值移动以及系统内技术要求的重大变化。本文介绍了DISTRICT-HP模型,该模型是一种新颖的方法,用于量化建筑物改型对分散能源系统的系统影响。本文包括对开发的优化模型的详细描述,以及基于德国分散能源系统的示例案例研究。结果表明,建筑改建的经济可行性取决于投资者的观点。从建筑物所有者的角度来看,与从系统的角度来看,改造在经济上吸引力较小。根据系统条件,与不进行改装的系统相比,包括改装在内的最终系统的成本可能更低。减少需求以及灵活运营所带来的节约可以导致建筑物翻新的经济吸引力增加。从系统角度强调了这种效果,因为使用灵活性潜力的空间增加了。如案例研究所示,由于对建筑物进行改造而导致的温度水平下降增加了灵活性,热泵可以产生更高效率的低温热量,可以将其存储在低温下,然后在需要时加热。

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