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Investigation of Solar Cooling Cogeneration Plant

机译:太阳能冷却热电联产厂的调查

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摘要

The deficiency in the energy for the space cooling is overcome by solar energy. Still the input energy is minimized by integrating both power and cooling cycle in common platform, such as working fluid, component and working parameters. The aqua-ammonia is used in both power cycle and vapor cooling cycle. The generator is common for cycles for the production of ammonia vapor. The analyses are made to find out the operational parameters for the cooling cogeneration cycle with solar as source. The analyses are done for the proposed cycle with various atmosphere temperatures. At absorber concentration of 0.42 and turbine inlet concentration of 0.90, with solar collector exit temperature of 155°C and atmosphere temperature of 30°C the generated power and cooling are 21.88 and 215.79 kW, respectively. The power and cooling output range can alter by varying turbine inlet concentration and temperature.
机译:太阳能克服了空间冷却能量不足的问题。通过将功率和冷却​​循环集成在通用平台(例如工作流体,组件和工作参数)中,仍然可以将输入能量最小化。氨水用于功率循环和蒸汽冷却循环。该发生器通常用于产生氨蒸气的循环。进行分析以找出以太阳能为源的制冷热电联产循环的运行参数。针对具有不同大气温度的建议循环进行了分析。在吸收器浓度为0.42且涡轮机入口浓度为0.90的情况下,太阳能收集器的出口温度为155°C,大气温度为30°C时,发电功率和冷却​​功率分别为21.88 kW和215.79 kW。功率和冷却​​输出范围可通过改变涡轮机入口浓度和温度来改变。

著录项

  • 来源
    《Applied solar energy》 |2018年第1期|65-70|共6页
  • 作者单位

    CO2 Research and Green Technologies Centre, Department of Thermal and Energy School of Mechanical Engineering, VIT University;

    CO2 Research and Green Technologies Centre, Department of Thermal and Energy School of Mechanical Engineering, VIT University;

    Faculty of Engineering and Applied Sciences, University of Ontario Institute of Technology;

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

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