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Thermal Properties of Cement-Based Composites for Geothermal Energy Applications

机译:地热能应用的水泥基复合材料的热性能

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Geothermal energy piles are a quite recent renewable energy technique where geothermal energy in the foundation of a building is used to transport and store geothermal energy. In this paper, a structural–functional integrated cement-based composite, which can be used for energy piles, was developed using expanded graphite and graphite nanoplatelet-based composite phase change materials (CPCMs). Its mechanical properties, thermal-regulatory performance, and heat of hydration were evaluated. Test results showed that the compressive strength of GNP-Paraffin cement-based composites at 28 days was more than 25 MPa. The flexural strength and density of thermal energy storage cement paste composite decreased with increases in the percentage of CPCM in the cement paste. The infrared thermal image analysis results showed superior thermal control capability of cement based materials with CPCMs. Hence, the carbon-based CPCMs are promising thermal energy storage materials and can be used to improve the durability of energy piles.
机译:地热能堆是一种非常新的可再生能源技术,其中建筑物基础中的地热能用于运输和存储地热能。在本文中,使用膨胀石墨和石墨纳米片基复合相变材料(CPCM)开发了可用于能量桩的结构功能集成的水泥基复合材料。评估了其机械性能,热调节性能和水合热。测试结果表明,GNP-石蜡水泥基复合材料在28天时的抗压强度超过25 MPa。储热水泥浆复合材料的弯曲强度和密度随水泥浆中CPCM百分比的增加而降低。红外热图像分析结果表明,具有CPCM的水泥基材料具有出色的热控制能力。因此,碳基CPCM是有前途的热能存储材料,可用于提高能量堆的耐久性。

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