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The CellFlux storage concept for cost reduction in parabolic trough solar thermal power plants

机译:Cellflux存储概念用于抛物面槽太阳能热电厂的成本降低

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Although facility scale thermal energy storage of sensible heat in the range of 200-550°C has achieved a high maturity, state-of-the-art approaches are still not very cost effective. An innovative storage concept is thus proposed that avoids the two major cost-driving factors of the concrete storage and 2-tank molten salt systems. First, the storage volume is comprised of low-cost sensible storage material such as concrete, natural stone or clinker bricks. These materials are several times cheaper than eutectic salt mixtures used in the 2-tank-storage system. Secondly, the system uses an intermediate air cycle, allowing for direct contact with the storage material. The necessary heat exchanger for transferring the heat from the primary oil loop to the intermediate air cycle consists of significantly less steel compared to the tube register inside the concrete storage. Dynamic models of the storage system have been implemented in a Matlab/Simulink environment to analyze its performance theoretically. The investigations show, that the overall performance and profitability of the storage system are mainly linked to the thermal efficiency and pressure drop of the heat exchanger, as well as the operation strategy. To demonstrate the feasibility of the storage concept and to investigate its performance characteristic under realistic conditions, a pilot scale test facility is set up.
机译:尽管在200-550°C范围内的合理热量的设施尺度热能储存已经取得了高成熟度,但最先进的方法仍然不是很高的成本效益。因此提出了一种创新的储存概念,以避免混凝土储存和2箱熔盐系统的两个主要成本驱动因素。首先,存储体积由低成本的明智储存材料组成,如混凝土,天然石材或熟料砖。这些材料比2罐储存系统中使用的共晶盐混合物便宜多倍。其次,系统使用中间空气循环,允许与储存材料直接接触。与混凝土存储器内的管寄存器相比,用于将热量从初级油回路转移到中间空气循环的必要热交换器包括明显较少的钢。存储系统的动态模型已在Matlab / Simulink环境中实现,从理论上分析其性能。研究表明,存储系统的整体性能和盈利能力主要与热交换器的热效率和压力降相关,以及操作策略。为了展示存储概念的可行性并在现实条件下调查其性能特征,建立了试验规模测试设施。

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