首页> 外文期刊>Energy >An experimental study and computational validation of waste heat recovery from a lab scale ceramic kiln using a vertical multi-pass heat pipe heat exchanger
【24h】

An experimental study and computational validation of waste heat recovery from a lab scale ceramic kiln using a vertical multi-pass heat pipe heat exchanger

机译:使用垂直多通热管换热器从实验室规模陶瓷窑中储存废热回收的实验研究与计算验证

获取原文
获取原文并翻译 | 示例
           

摘要

The development of waste heat recovery technologies has surged as a result of climate change initiatives, which require energy intensive industries to curb their emissions and lower energy consumption. Installing heat pipe heat exchangers has proven to be a reliable and effective method of recovering waste heat due to their passive operation, superconductive properties and small footprint. This paper highlights the application of a vertical multi-pass heat pipe heat exchanger to a lab scale ceramic kiln system used to transfer heat from the kiln exhaust to water. The innovative heat pipe heat exchanger exists as a novel variable unit able to recover heat energy for a range of inlet temperatures and flow rates. The installed unit has shown a heat recovery rate of up to 63 kW. A range of exhaust gas temperatures from 135 to 270 °C were trialled at varying heat source and sink mass flow rates. The results of the experiments as well as simulation results using a model built using the software TRNSYS are given. The investigation has confirmed that the TRNSYS simulation results agree well with the experimental results. Additionally, return on investment analysis predicted 33 months payback for a theoretical full-scale unit preheating water for space heating.
机译:废热回收技术的发展因气候变化倡议而飙升,需要能源密集产业来遏制其排放和降低能耗。安装热管热交换器已被证明是一种可靠而有效的方法,可通过其被动操作,超导性能和小型占地面积来回收废热。本文突出了垂直多通热管热交换器将垂直多通热管换热器应用于实验室陶瓷窑系统,用于将热量从窑排气转移到水中。创新的热管热交换器作为一种新的可变单元,能够在一系列入口温度和流速中回收热能。安装的单元显示出高达63千瓦的热回收率。在不同的热源和水槽质量流量下,试验从135至270℃的一系列排气温度。给出了实验结果以及使用使用软件Trnsys建造的模型的模拟结果。调查证实,Trnsys仿真结果与实验结果很好。此外,投资回报分析预测了33个月的理论全尺寸单位预热水进行了33个月的空间加热。

著录项

  • 来源
    《Energy》 |2020年第1期|118325.1-118325.20|共20页
  • 作者单位

    College of Engineering Design and Physical Sciences Brunei University London Uxbridge Middlesex UBS 3PH London UK;

    Institute de Tecnologia Cerdmica Campus Universitario Riu Sec 12006 Castellon Spain;

    Institute de Tecnologia Cerdmica Campus Universitario Riu Sec 12006 Castellon Spain;

    Institute de Tecnologia Cerdmica Campus Universitario Riu Sec 12006 Castellon Spain;

    College of Engineering Design and Physical Sciences Brunei University London Uxbridge Middlesex UBS 3PH London UK;

    Spirax Sarco Engineering PLC Cheltenham CL51 9NQ United Kingdom;

    College of Engineering Design and Physical Sciences Brunei University London Uxbridge Middlesex UBS 3PH London UK;

    College of Engineering Design and Physical Sciences Brunei University London Uxbridge Middlesex UBS 3PH London UK;

    Altek Europe Burley Close Lakeside House Chesterfield S40 2UB United Kingdom;

    Altek Europe Burley Close Lakeside House Chesterfield S40 2UB United Kingdom;

    College of Engineering Design and Physical Sciences Brunei University London Uxbridge Middlesex UBS 3PH London UK;

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

    Heat pipe technology; Waste heat recovery; Heat pipe heat exchange; r Ceramics kiln; System modelling;

    机译:热管技术;浪费热回收;热管热交换;R陶瓷窑;系统建模;

相似文献

  • 外文文献
  • 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