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Development of a System Model for an Indirect Passive Solar Dryer with Experimental Validation.

机译:具有实验验证的间接被动式太阳能干燥机系统模型的开发。

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摘要

Solar crop drying is a cheap and effective way to preserve food material, especially in developing countries where fuel and electricity are expensive or unavailable. Some tropical fruits are difficult to transport and store leading to significant spoilage. Without access to fuel and large drying systems, preserving fruits for later use is challenging or not possible for the rural farmer. Developing low-cost, easily assembled locally and low maintenance fruit drying systems would improve access to off-season and distant markets. A mathematical model of an indirect passive solar drying system was developed to design and optimize drying systems for use in developing countries and was validated through experimental testing.;The prototype drying system consisted of a transpired solar absorber, drying chamber, and chimney. The transpired solar collector allows for indirect heat gain using cheap materials, specifically landscape fabric. The drying chamber houses fruit on eight screen trays and the chimney induces airflow through the system without a power source. The novel collector efficiency regularly exceeded 50% with an average temperature rise over 20oC. Bananas were dried over a two day period from an average moisture content of 73% to 8%. A total of 4kg of banana slices per square meter of absorber area were dried over the testing period. The mathematical model uses solar irradiance, ambient relative humidity, ambient temperature, and initial fruit moisture content to predict the fruit drying curves. The predicted average final moisture content of the bananas starting at 73% was 9% over the two day test period, indicating the model predicts performance reasonably well. Results from the system model highlight the need for additional experimentation to determine parameters such as the diffusivity of bananas and the mass transfer coefficient independently of experimental setup before it can be used as a tool to simulate drying performance for different environmental conditions and dryer system configurations.
机译:太阳农作物干燥是保存食物材料的一种廉价而有效的方法,特别是在燃料和电力价格昂贵或无法获得的发展中国家。一些热带水果难以运输和储存,导致严重的腐败。在没有燃料和大型干燥系统的情况下,保存水果以备后用对于农村农民而言是一项挑战,甚至是不可能的。开发低成本,易于本地组装且维护成本低的水果干燥系统将改善进入淡季和遥远市场的机会。建立了间接被动式太阳能干燥系统的数学模型,以设计和优化供发展中国家使用的干燥系统,并通过实验测试进行了验证。原型干燥系统由透明的太阳能吸收器,干燥室和烟囱组成。蒸发的太阳能收集器允许使用便宜的材料(特别是景观织物)间接获取热量。干燥室将水果放在八个筛板上,烟囱在没有电源的情况下引导气流通过系统。新型集热器效率通常超过50%,平均温度升高超过20oC。香蕉在两天内干燥,平均水分含量从73%降至8%。在测试期间,每平方米吸收器区域总共干燥4公斤香蕉片。该数学模型使用太阳辐照度,环境相对湿度,环境温度和初始水果水分含量来预测水果干燥曲线。在两天的测试期间,预计香蕉的平均最终最终水分含量为73%,为9%,这表明该模型可以合理地预测性能。系统模型的结果突出表明,在可以将其用作模拟不同环境条件和干燥机系统配置的干燥性能的工具之前,需要进行其他实验来确定参数,例如香蕉的扩散率和传质系数,而与实验设置无关。

著录项

  • 作者

    Huselstein, Samantha.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Mechanical engineering.;Sustainability.;Alternative Energy.
  • 学位 M.S.
  • 年度 2016
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

  • 入库时间 2022-08-17 11:40:50

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