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Development of solar-driven absorption cycle heat pump grain drying system.

机译:开发太阳能吸收循环热泵谷物干燥系统。

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摘要

A commercially available lithium bromide-water absorption cycle air conditioner was operated as a solar-driven heat pump. Solar energy from flat plate collectors was used as the driving force. Four operational conditions were tested: (1) a closed cycle mode, (2) a regular heating/cooling mode, (3) a latent-to-sensible heat transfer mode with moisture loading added manually, and (4) a latent-to-sensible heat transfer mode with moisture loading added by drying grain.; Operational characteristics were tested on both clear and partly cloudy days. Generator inlet water temperature, condenser inlet water temperature, air temperature entering the evaporator, and moisture load at the evaporator were found to be the most important operational parameters affecting the performance of the system. In regression analyses with third-order polynomials the performance of the system as measured by coefficients of performance for cooling and heating (COPc and COPh) were described, for each operational mode, by these four parameters with R-square values above 0.82. COPc and COPh both increased as generator inlet water temperature decreased. COPc increased but COPh decreased as condenser inlet water temperature increased. Both COPc and COPh increased as air temperature entering the evaporator and moisture load at the evaporator increased.; Results from the solar-driven absorption cycle heat pump grain drying operational mode indicated that 40 percent of the electrical energy required for grain drying can be saved compared to a compressor driven heat pump system and 60 percent compared to an electrical resistance heating system. The latent-to-sensible heat transfer operational mode was more efficient than the regular heat/cooling mode.
机译:将市售的溴化锂-吸水循环式空调器用作太阳能驱动的热泵。来自平板收集器的太阳能被用作驱动力。测试了四个操作条件:(1)封闭循环模式;(2)常规加热/冷却模式;(3)手动添加水分负载的潜热-传热模式;(4)潜热-潜热模式-传热模式,通过干燥谷物增加水分含量。在晴天和部分阴天都测试了操作特性。发电机的进水温度,冷凝器的进水温度,进入蒸发器的空气温度以及蒸发器的水分负荷被认为是影响系统性能的最重要的运行参数。在使用三阶多项式进行的回归分析中,系统的性能由制冷和加热的性能系数(COPc和COPh)测得,对于每种运行模式,均通过这四个R值均大于0.82的参数进行描述。 COPc和COPh均随着发电机入口水温的降低而增加。随着冷凝器进水温度的升高,COPc升高,但COPh降低。 COPc和COPh都随着进入蒸发器的气温和蒸发器中水分含量的增加而增加。太阳能驱动的吸收式循环热泵谷物干燥操作模式的结果表明,与压缩机驱动的热泵系统相比,谷物干燥所需的电能可以节省40%,与电阻加热系统相比可以节省60%。潜热传热运行模式比常规的热/制冷模式更有效。

著录项

  • 作者

    Lei, Perng-Kwei Keith.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Agricultural.; Engineering Heat and Thermodynamics.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;能源与动力工程;
  • 关键词

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