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THERMAL ENERGY STORAGE TECHNOLOGY FOR INDUSTRIAL PROCESS HEAT APPLICATIONS

机译:用于工业工艺热应用的热能存储技术

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This paper deals with the assessment of different thermal energy storage technologies for solar process heat application. Three different storage concepts are discussed in detail: sensible solid media storage, steam accumulators, and phase change energy storage. The first two systems are sensible storage systems and the latter one is using solid-liquid phase change of salts for isothermal heat storage. All three concepts are superior to commercially available pressurized water storage units. For the assessment of the different concepts a reference case was defined consisting of a solar system providing saturated steam for an industrial process demanding heat at 140°C. The temperature difference between operation temperature of the solar system and the industrial process has significant influence on the assessment of the different storage technologies. A small temperature difference of 20K or even less shows significant advantage of the PCM storage approach. Values in the order of 60K lead to an adjustment of the cost of the different concepts. In this case a more detailed evaluation is required to identify the most economic technology.
机译:本文涉及对太阳能加热应用的不同热能存储技术的评估。详细讨论了三种不同的存储概念:明智的固体介质存储,蒸汽蓄能器和相变能量存储。前两个系统是明智的储存系统,后者是使用盐的固液相变,用于等温蓄热。所有三种概念都优于市售的加压储水装置。为了评估不同概念的参考案例,由太阳系组成,该太阳系包括为在140°C时要求加热的工业过程提供饱和蒸汽。太阳系的操作温度与工业过程之间的温差对不同存储技术的评估产生了重大影响。 20k甚至更小的温度差异显示了PCM存储方法的显着优势。 60k的值导致调整不同概念的成本。在这种情况下,需要更详细的评估来确定最经济技术。

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