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ENERGY EFFICIENCY OF A NEW HEAT PUMP SYSTEM FOR DRYING GRAIN

机译:新型干粮热泵系统的能源效率

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摘要

An experimental closed-loop heat pump grain drying system was designed and evaluated for energy performance while drying shelled corn and grain sorghum. The system was designed based on an estimated heat pump coefficient of performance (COP) of 4.0, an air-to-air exchanger efficiency of 80%, and a fan efficiency of 50%. The objective of this research was to develop and evaluate a closed-loop heat-pump system for drying grain that is more efficient than conventional gas-fired dryers. Four drying tests using three corn lots with initial moisture contents of 25%, 20%, and 18% w.b. and one grain sorghum lot with initial moisture content of 25% w.b. were conducted during the 1998 fall harvest season. Temperature of the heated air was controlled in the range of 43 to 48 ° C with airflow rates of 0.26 and 0.25 m 3 /h per dry mass of grain for corn and grain sorghum, respectively. The average amount of input energy (all electric) required to remove 1 kg of water from the corn lots was 1186 kJ based on grain lot weight differences before and after drying. The best drying performance observed in a 4-6 h period was 942 kJ/kg of water removed. The average drying capacity was 230 kg/h based on an equivalent moisture reduction from 25% to 15.5% w.b. The drying performance for drying grain sorghum was lower (1516 kJ/kg of water) than that for drying corn. The average thermal energy transfer rate of the air-to-air heat exchanger was 11.47 kW, which represented about 28% of the total (source-sink) thermal energy transfer rate of 39.38 kW. The average efficiency of the air-to-air heat exchanger was about 34%. The average COP for the heat pump was 6.4 including the air-to-air thermal transfer and 4.7 excluding the air-to-air thermal transfer
机译:设计了一个实验性的闭环热泵谷物干燥系统,并在干燥带壳的玉米和谷物高粱时评估了能量性能。该系统的设计基于估计的热泵性能系数(COP)为4.0,空气-空气交换器效率为80%和风扇效率为50%。这项研究的目的是开发和评估一种用于干燥谷物的闭环热泵系统,该系统比传统的燃气干燥机效率更高。使用三个玉米批次的四个干燥测试,初始含水量为w%25%,20%和18%。一粒高粱,初始含水量为25%w.b。在1998年秋季收获季节进行。玉米和谷物高粱的干燥谷物的热风温度分别控制在43至48°C,风量分别为0.26和0.25 m 3 / h。基于干燥前后谷物重量的差异,从玉米批次中除去1千克水所需的平均输入能量(全部电能)为1186 kJ。在4-6小时内观察到的最佳干燥性能为942 kJ / kg去除水。平均水分干燥量为230千克/小时(基于水分从25%减少到15.5%w.b)。谷物高粱的干燥性能(1516 kJ / kg水)低于玉米干燥的性能。空气-空气热交换器的平均热能传递率为11.47 kW,约占总(源-汇)热能传递39.38 kW的28%。空气-空气热交换器的平均效率约为34%。热泵的平均COP为6.4(包括空气对空气的热传递)和4.7(不包括空气对空气的热传递)

著录项

  • 来源
    《Transactions of the ASAE》 |2001年第6期|p.1745-1750|共6页
  • 作者

    D. Wang; C. S. Chang;

  • 作者单位

    Donghai Wang, ASAE Member , Assistant Professor, Department of Biological and Agricultural Engineering, Kansas State University, Manhattan, Kansas;

    and Cheng Sheng Chang , Agricultural Engineer, USDA-ARS, Grain Marketing and Production Research Center, Manhattan, Kansas. Corresponding author : Donghai Wang, Dept. of Biological and Agricultural Engineering, Kansas State University, Manhattan, KS 66506;

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

    Corn; Grain sorghum; Grain drying; Heat pumps; Coefficient of performance;

    机译:玉米;谷物高粱;谷物干燥;热泵;性能系数;

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