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Experimental investigation of a biomass-fired ORC-based micro-CHP for domestic applications

机译:基于生物质的基于ORC的生物质微型CHP的家用试验研究

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摘要

The ever-increasing global energy demand and the mounting environmental concerns caused by the increasing consumption of fossil fuels call for more and more utilisation of sustainable energy sources such as biomass. Many medium- and large-scale biomass-fired combined heat and power (CHP) plants have been demonstrated and commercialised in many parts of the world, such as several European countries and China. However, few biomass-fuelled micro-scale CHP (1-10 kW_e) systems suitable for domestic applications have been demonstrated or commercialised. This paper presents the preliminary results of an experimental investigation on the biomass-fired organic Rankine cycle (ORC)-based micro-CHP system currently developed by the authors. The biomass-fired ORC-based micro-CHP system mainly consists of a biomass boiler, an evaporator, an ORC expander, an alternator, a heat recuperator and a condenser. The heat of biomass combustion in the boiler is used to generate hot water, which is then used to heat and vaporise the organic working fluid through the evaporator. The organic fluid vapour drives the expander to rotate an alternator, producing power. The expanded organic fluid vapour leaving the expander first passes through the heat recuperator and then is condensed in the condenser. The cooling water leaving the condenser can be heated to a temperature (~46 °C) suitable for domestic washing and under-floor heating etc. Testing results of the micro-CHP system with a 50 kWth biomass-pellet boiler are analysed and presented in this paper. The current micro-CHP generated 861 W electricity and 47.26 kW_(th) heat, corresponding to electricity generation efficiency of 1.41% and CHP efficiency of 78.69%. Further improvements on the performance of the expander and the alternator assembly as well as the design of the biomass boiler's heat exchanger need to be addressed in the future.
机译:全球能源需求不断增长,以及由于化石燃料消耗增加而引起的对环境的日益关注,要求越来越多地利用生物质等可持续能源。在世界许多地区,例如几个欧洲国家和中国,许多中型和大型生物质燃料热电联产电厂已经得到了示范和商业化。但是,很少有适用于家庭应用的生物质燃料微型CHP(1-10 kW_e)系统得到论证或商业化。本文介绍了作者目前正在开发的基于生物质燃料的有机朗肯循环(ORC)的微型CHP系统的实验研究的初步结果。基于生物质的基于ORC的微型CHP系统主要由生物质锅炉,蒸发器,ORC膨胀器,交流发电机,换热器和冷凝器组成。锅炉中生物质燃烧的热量用于产生热水,然后用于通过蒸发器加热和蒸发有机工作流体。有机流体蒸气驱动膨胀机旋转发电机,从而产生动力。离开膨胀器的膨胀的有机流体蒸气首先通过换热器,然后在冷凝器中冷凝。可以将离开冷凝器的冷却水加热到适合家用洗涤和地板采暖等的温度(〜46°C)。分析并介绍了使用50 kWth生物质颗粒锅炉的微型CHP系统的测试结果。这篇报告。当前的微型热电联产发电量为861 W,热量为47.26 kW_th,发电效率为1.41%,热电联产效率为78.69%。将来需要对膨胀机和交流发电机组件的性能以及生物质锅炉的热交换器的设计进行进一步的改进。

著录项

  • 来源
    《Fuel》 |2012年第2012期|p.374-382|共9页
  • 作者单位

    Department of Architecture and Built Environment, Faculty of Engineering, University of Nottingham, University Park, Nottingham NC2 2RD, UK;

    Department of Architecture and Built Environment, Faculty of Engineering, University of Nottingham, University Park, Nottingham NC2 2RD, UK;

    Department of Architecture and Built Environment, Faculty of Engineering, University of Nottingham, University Park, Nottingham NC2 2RD, UK;

    Department of Architecture and Built Environment, Faculty of Engineering, University of Nottingham, University Park, Nottingham NC2 2RD, UK;

    Department of Architecture and Built Environment, Faculty of Engineering, University of Nottingham, University Park, Nottingham NC2 2RD, UK;

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

    micro-CHP; organic rankine cycle (ORC); vane expander; HFE7000; biomass-fired;

    机译:微型热电联产有机朗肯循环(ORC);叶片膨胀机HFE7000;生物质燃料;

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