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Conceptual Study of a Thermal Storage Module for Solar Power Plants with Parabolic Trough Concentrators

机译:具有抛物槽式聚光器的太阳能发电厂的蓄热模块的概念研究

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摘要

The thermal storage technology (TSE) has a relevant strategic importance for the success of solar plants devoted to electric energy and heat production. The major benefits in the use of storage include higher efficiency and reduction in the mean levelled cost of the electric energy unit (LEC). Sensible heat storage systems within solid media have been identified, both technically and economically, as a very promising solution. The development of such a storage technology, adopting concrete, could reduce the specific cost to less than 20€ per kWh of thermal capacity; additionally, such a solution is suitable for small-medium size plants with a power ranging from 1 MW to 5 MW, to be easily introduced in the Italian territory and with reduced operational and maintenance needs. In large size CSP systems, as the ARCHIMEDE plant built by ENEL with ENEA technology, a high temperature fluid storage (between 400 and 500°C) is required. Such a temperature seems at present not adequate to allow for adopting concrete, whereas the production of concrete able to sustain 250-300°C appears as a reachable objective.It is supposed to study a storage system characterised by a parallelepiped structure with appropriate section, selfbearing and supported on its major axis, as well as by a piping system directing the thermovector fluid within the cemented matrix.
机译:蓄热技术(TSE)对于致力于电能和热量生产的太阳能发电厂的成功具有重要的战略意义。使用存储的主要好处包括更高的效率和降低电能单位(LEC)的平均成本。在技​​术上和经济上,固态介质中的显热存储系统已被认为是非常有前途的解决方案。采用混凝土的这种存储技术的发展可以将单位成本降低到每千瓦时热能不到20欧元。此外,这种解决方案适用于功率范围从1 MW到5 MW的中小型电厂,易于在意大利境内引入并且减少了运营和维护需求。在大型CSP系统中,作为由ENEL使用ENEA技术建造的ARCHIMEDE工厂,需要高温流体存储(400至500°C之间)。目前,这样的温度似乎不足以允许采用混凝土,而能够承受250-300°C的混凝土生产似乎是可以达到的目标。应该研究一种具有适当截面的平行六面体结构的存储系统,自承和主轴支撑,以及通过管道系统将热载体流体引导到胶结的基体内。

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