...
首页> 外文期刊>Energy >Development of advanced materials guided by numerical simulations to improve performance and cost-efficiency of borehole heat exchangers (BHEs)
【24h】

Development of advanced materials guided by numerical simulations to improve performance and cost-efficiency of borehole heat exchangers (BHEs)

机译:数字模拟引导先进材料的开发,提高钻孔换热器的性能和成本效率(烟)

获取原文
获取原文并翻译 | 示例
           

摘要

One promising way to improve the efficiency of borehole heat exchangers (BHEs) in shallow geothermal applications is to enhance the thermal properties of the materials involved in its construction. Early attempts, such as using metal tubes in the 1980s or the utilization of thin-foil hoses, did not succeed in being adopted by the market for diverse reasons (cost, corrosion, fragility, etc...). In parallel, the optimization of pipe size, the use of double-U-tubes, thermally enhanced grout, etc. were able to bring the measure for the BHE efficiency, the borehole thermal resistance, from 0.20 to 0.15 K/(Wm) down to 0.08 -0.06 K/(Wm) in the best solutions today. A further improvement cannot be expected without development of new, dedicated materials, combining the versatility of plastic like PE with an increased thermal conductivity that matches the respective properties of the rock and soil. This goal was included in the Strategic Research and Innovation Agenda of the European Technology Platform on Renewable Heating and Cooling in 2013. Within an EU supported project, both BHE pipes and grouting materials have been produced proto-typically in small amounts, suitable for the first tests in the intended environment. The present work explains the research pathways envisaged and the resulting sensitivity analysis to highlight the influence of some of the most critical parameters that affect the overall performance of a GSHP system. The results have allowed guiding the real development of more efficient new advanced materials for different scenarios representative of different European regions. Finally the developed materials and their properties are discussed, including a comparative assessment about their compliance with reference material properties as currently seen in the BHE market.
机译:一种提高浅层地热应用钻孔换热器(钻)效率的有希望的方法是提高其结构所涉及的材料的热性能。早期尝试,例如在20世纪80年代使用金属管或薄膜软管的利用,以各种原因(成本,腐蚀,脆弱等)采用市场而无法成功。同时,管道尺寸的优化,使用双U形管,热增强的灌浆等能够使BHE效率,钻孔热阻,从0.20到0.15 k /(wm)的测量值下降今天最好的解决方案中至0.08 -0.06 k /(wm)。在不开发新的专用材料的情况下,不能预期进一步的改进,使塑料的多功能性相结合,使PE具有增加的导热性,其与岩石和土壤的各个性质相匹配。这一目标被列入2013年可再生阅览构的欧洲技术平台的战略研究和创新议程。在欧盟支持的项目中,BHE管道和灌浆材料都是生产的,通常少量,适合第一个在预期环境中进行测试。本工作解释了所设想的研究途径和由此产生的灵敏度分析,突出了一些影响GSHP系统整体性能的一些最关键参数的影响。结果允许为不同欧洲地区代表不同情景的不同方案的更有效的新先进材料的实际开发。最后讨论了发达的材料及其性质,包括与在BHE市场上目前看到的参考材料特性的比较评估。

著录项

  • 来源
    《Energy》 |2020年第15期|117628.1-117628.17|共17页
  • 作者单位

    Institute de Aplicaciones de las Tecnologias de la Information y de las Comunicaciones Avanzadas (ITACA) Universitat Politecnica de Valencia Camino de Vera S/N 46022 Valencia Spain;

    UBeG GbR Reinbergstasse 2 35580 Wetzlar Germany;

    Institute de Aplicaciones de las Tecnologias de la Information y de las Comunicaciones Avanzadas (ITACA) Universitat Politecnica de Valencia Camino de Vera S/N 46022 Valencia Spain;

    Institute de Aplicaciones de las Tecnologias de la Information y de las Comunicaciones Avanzadas (ITACA) Universitat Politecnica de Valencia Camino de Vera S/N 46022 Valencia Spain;

    SPIN-PET Via R Piaggio 32 56025 Pontedera Italy;

    SPIN-PET Via R Piaggio 32 56025 Pontedera Italy;

    AIMPLAS - Plastics Technology Centre Parc Tecnologic Carrer de Gustave Eiffel 4 46980 Paterna Valencia Spain;

    RISE Research Institutes of Sweden Division Samhaellsbyggnad - Infrastructure and Concrete Construction Stockholm Sweden;

    RISE Research Institutes of Sweden Division Samhaellsbyggnad - Infrastructure and Concrete Construction Stockholm Sweden;

    Institute de Aplicaciones de las Tecnologias de la Information y de las Comunicaciones Avanzadas (ITACA) Universitat Politecnica de Valencia Camino de Vera S/N 46022 Valencia Spain;

    Institute de Aplicaciones de las Tecnologias de la Information y de las Comunicaciones Avanzadas (ITACA) Universitat Politecnica de Valencia Camino de Vera S/N 46022 Valencia Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Shallow geothermal energy; Borehole heat exchangers (BHE); Thermal conductivity; Plastic pipes; Grouting material; Phase-change material (PCM); Increased efficiency; Cost reduction;

    机译:浅层地热能;钻孔热交换器(BHE);导热系数;塑料管;灌浆材料;相变材料(PCM);提高效率;降低成本;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号