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Concrete as a thermal energy storage medium for thermocline solar energy storage systems

机译:混凝土作为热跃层太阳能存储系统的热能存储介质

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摘要

Rising energy costs and the adverse effect on the environment caused by the burning of fossil fuels have triggered extensive research into alternative sources of energy. Harnessing the abundance of solar energy has been one of the most attractive energy alternatives. However, the development of an efficient and economical solar energy storage system is of major concern. According to the Department of Energy (DOE), the cost per kilowatt hour electric from current technologies which utilize solar energy is high, estimated at approximately $0.15-$0.20/kW h_(electric), while the unit cost to store the thermal energy is approximately $30.00/kW h_(thermal). Based on traditional means of producing electricity (through burning fossil fuels), the unit cost of electricity is $0.05-$0.06/kW h. Clearly, current solar energy technologies cannot compete with traditional forms of electricity generation. In response, the DOE has established a goal of reducing the cost of solar generated electricity to $0.05-$0.07/kW h_(electric) and achieving thermal storage costs below $15.00/kW h_(thermal). Reduction in the cost of the storage medium is one step in achieving the stated goal. In this research program economical concrete mixtures were developed that resisted temperatures up to 600 ℃. This temperature level represents a 50% increase over the operating temperature of current systems, which is approximately 400 ℃. However, long-term testing of concrete is required to validate its use. At this temperature, the unit cost of energy stored in concrete (the thermal energy storage medium) is estimated at $0.88-$1.00/kW h_(thermal). These concrete mixtures, used as a thermal energy storage medium, can potentially change solar electric power output allowing production through periods of low to no insolation at lower unit costs.
机译:由于化石燃料燃烧而导致的能源成本上升和对环境的不利影响,引发了对替代能源的广泛研究。利用丰富的太阳能一直是最有吸引力的能源替代方案之一。然而,开发高效且经济的太阳能存储系统是主要关注的问题。根据能源部(DOE)的数据,当前利用太阳能的技术所产生的每千瓦时电力成本很高,估计约为0.15-0.20美元/千瓦时(电力),而存储热能的单位成本约为$ 30.00 / kW h_(热)。基于传统的发电方式(通过燃烧化石燃料),单位电力成本为0.05-0.06美元/千瓦时。显然,当前的太阳能技术无法与传统形式的发电竞争。作为回应,DOE制定了一个目标,将太阳能发电的成本降低至0.05-0.07美元/ kW h_(电),并使热存储成本低于15.00美元/ kW h_(热)。降低存储介质的成本是实现所述目标的第一步。在该研究计划中,开发了经济的混凝土混合物,其耐高温达600℃。该温度水平表示比当前系统的工作温度(约400℃)高50%。但是,需要对混凝土进行长期测试以验证其用途。在此温度下,混凝土(热能存储介质)中存储的能量的单位成本估计为$ 0.88- $ 1.00 / kW h_(热)。这些用作热能存储介质的混凝土混合物可能会改变太阳能的输出功率,从而允许以较低的单位成本进行低至无日照的生产。

著录项

  • 来源
    《Solar Energy》 |2013年第10期|194-204|共11页
  • 作者单位

    Department of Civil Engineering, University of Arkansas, Fayetteville, AR 72701, USA;

    Department of Civil Engineering, University of Arkansas, Fayetteville, AR 72701, USA;

    Department of Civil Engineering, University of Arkansas, Fayetteville, AR 72701, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar energy; Energy storage; Thermocline; Concrete; Molten salt;

    机译:太阳能;储能;温跃层;具体;熔盐;

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