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Experimental validation of the innovative thermal energy storage based on an integrated system 'storage tank/steam generator'

机译:基于集成系统“储罐/蒸汽发生器”的创新热能储存的实验验证

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In the past years, an innovative thermal energy storage system at high temperature (up to 550°C) for CSP plants was proposed by ENEA and Ansaldo Nucleare: a single storage tank integrated with a steam generator immersed in the heat storage medium. The idea is based on the exploitation of the thermophysical characteristics of the heat storage medium (a binary mixture of salts of NaNO3 at 60% and KNO3 at 40%) in order to maintain over time, in the single tank, a thermal stratification of the fluid. The thermal stratification is able to trigger, in the immersed steam generator, the natural circulation, shell side and downwards, of the hot molten salt cooled down by the water that flows upwards tube side, thus heating up and producing superheated steam. The advantages of such a system are:-efficient performances;-simple implementation;-compactness:-modularity;-and, overall, contained costs: only one storage tank instead of the two tanks and only one heat exchanger instead of the three exchangers of the classic configuration; reduced quantity of sa minimization of piping, valves and other components. The technical feasibility of the proposed system, together with the stability over time of the stratification in temperature of the storage medium, have been already verified and assessed. This report has the aim of presenting the experimental results obtained by ENEA in the Casaccia Research Centre (Rome, Italy), with a small scale test section consisting of a 300 kW_(th) steam generator inserted in a 8 m~3 storage tank with molten salt at high temperature. The reported results relate to the behaviour of the system in steady state conditions, and show its promising performances.
机译:在过去几年中,在高温(高达550℃)CSP植物的创新热能存储系统,提出了通过ENEA和安萨尔多Nucleare:用浸在储热介质的蒸汽发生器集成在单个储存箱。这个想法是为了维持随时间推移,在单罐中,所述的热分层基于所述储热介质的热物理特性的开发(硝酸钠盐中的60%和40%的二元混合物KNO 3)体液。热分层能够触发,在浸入式蒸汽发生器中,自然循环,壳侧和向下,热熔融盐的冷却由向上管侧流动的水,从而加热并产生过热蒸汽。这种系统的优点是:性能效率高达; - 简单的实现; -compactness:-modularity; -and,整体,包含成本:只有一个存储池,而不是两辆坦克,只有一个换热器,而不是三个器经典的配置;降低盐的量;管路,阀门和其它部件的最小化。所提出的系统的技术可行性,具有稳定性超过在存储介质的温度分层在一起的时候,已经被验证和评估。此报告呈现在卡萨西亚研究中心(罗马,意大利)由ENEA获得的实验结果,与由插入在与一个8米〜3储罐300 kW_(TH)蒸汽发生器的小规模试验段的目的在高温下熔融的盐。该报告的结果涉及到系统的稳定状态下的行为,并显示其看好的表演。

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