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SIMULATION STUDY FOR THE SOLAR RETROFITTING OF A DISTRICT HEATING SYSTEM

机译:区域供热系统太阳能改造的模拟研究

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To boost the dissemination of renewable heat production in Germany’s urban housing estates, new conceptsrnfor the integration of solar-thermal plants into existing district heating networks have to be developed. Thernunderlying research project of this paper is aiming at a decentralised integration of the collector arrays. Itrncomprises a review of existing large solar-thermal systems, a simulation study and the retrofitting of arndistrict heating network. In this paper, a simulation based comparison of the energetic and economic performance of several standard system designs including state-of-the-art solar district heating and decentralised plants is conducted. The results serve as a benchmark for the assessment of the novel concept. The model of the district heating network was built in MATLAB/Simulink by use of the CARNOT block set. None of the simulated concepts leads to a reduction of the already low fossil heat generation costs.rnNevertheless, by a decentralised integration of solar-thermal plants of the aimed size, solar fractions of up torn5.7 % can be reached. The investigated systems for a centralised integration reach 3.8 % solar fraction.
机译:为了促进可再生热能在德国城市居住区的传播,必须开发将太阳能热电厂整合到现有的区域供热网络中的新概念。本文的基础研究项目旨在收集器阵列的分散集成。它包括对现有大型太阳能系统的回顾,仿真研究以及对arndistrict加热网络的改造。在本文中,基于仿真的比较了几种标准系统设计的能量和经济性能,其中包括最先进的太阳能区域供热和分散式设备。这些结果可作为评估新概念的基准。使用CARNOT块集在MATLAB / Simulink中建立了区域供热网络的模型。没有一个模拟的概念可以降低已经很低的化石发电成本。然而,通过分散集成目标规模的太阳能热电厂,可以达到最高5.7%的太阳能分数。用于集中式集成的研究系统的太阳能比例达到3.8%。

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