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Testing of High-Performance Concrete as a Thermal Energy Storage Medium at High Temperatures

机译:高性能混凝土作为高温储热介质的测试

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摘要

Concrete is tested as a sensible heat thermal energy storage (TES) material in the temperature range of 400-500 ℃ (752-932 °F). A molten nitrate salt is used as the heat transfer fluid (HTF); the HTF is circulated though stainless steel heat exchangers, imbedded in concrete test prisms, to charge the TES system. During charging, significant cracking occurs in both the radial and longitudinal directions in the concrete prisms. The cracking is due to hoop stress induced by the dissimilar thermal strain rates of concrete and stainless steel. A 2D finite element model (FEM) is developed and used to study the stress at the prism/exchanger interface. Polytetrafluoroethylene (PTFE) and a heat-curing, fibered paste (HCFP) are tested as interface materials to mitigate the stress in the concrete. Significant reduction in the size and number of cracks is observed after incorporating interface materials. A heat exchanger with a helical fin configuration is incorporated to improve the heat transfer rate in the concrete. Testing confirms that the fins increase the rate of heat transfer in the concrete; however, large cracks form at each of the fin locations. Only the HCFP is tested as an interface material for the finned heat exchanger. The HCFP decreases the number and size of the cracks, however, not to the desired hairline levels.
机译:混凝土在400-500℃(752-932°F)的温度范围内作为显热热能存储(TES)材料进行了测试。熔融硝酸盐用作传热流体(HTF); HTF通过嵌入在混凝土测试棱镜中的不锈钢热交换器进行循环,以对TES系统进行充电。在装料过程中,混凝土棱柱的径向和纵向都出现明显的裂纹。开裂是由于混凝土和不锈钢的热应变率不同而引起的环向应力。开发了2D有限元模型(FEM),并将其用于研究棱镜/交换器界面处的应力。测试了聚四氟乙烯(PTFE)和热固性纤维糊(HCFP)作为界面材料以减轻混凝土中的应力。结合界面材料后,观察到裂缝的大小和数量的显着减少。结合了具有螺旋翅片构造的热交换器以提高混凝土中的传热速率。测试证实,散热片提高了混凝土的传热速率。但是,在每个散热片位置都会形成大裂缝。仅将HCFP作为翅片式热交换器的界面材料进行了测试。 HCFP减少了裂纹的数量和大小,但未达到所需的发际线水平。

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  • 来源
    《Journal of solar energy engineering》 |2014年第2期|021004.1-021004.6|共6页
  • 作者单位

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

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

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

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

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