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A heat and mass transport model of clay pot evaporative coolers for vegetable storage

机译:煲蒸发冷却器的热量和质量传输模型蔬菜储存

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摘要

Clay pot coolers are low-cost technologies that can prolong vegetable shelf-life by providing a cool and humid storage environment through evaporative cooling. A predictive performance model of these systems is not available for investigating the impact of design modifications on device performance. This study proposes transport models for pot-in-pot and pot-in-dish coolers that have been validated with experimental data from 17 field trials from Mali and Rwanda with maximum errors of less than 6% observed. Results show that the pot-in-pot and pot-in-dish devices consume 1.96 and 2.85 L/day of water, respectively. A parametric study was conducted to evaluate how the refrigeration efficiency and daily water consumption are affected by the size of the device, local wind speed, and the mass of vegetables stored in the cooler. Increasing local wind speeds provides a net positive impact on refrigeration efficiency despite the increased convective heating. In addition, the quantity of vegetable mass showed a negligible impact on daily water consumption. Insights from the model suggest that water consumption is more efficient for larger devices.
机译:粘土罐冷却器是低成本技术,可以通过蒸发冷却提供凉爽和潮湿的储存环境来延长蔬菜保质期。这些系统的预测性能模型不可用于调查设计修改对设备性能的影响。本研究提出了用于锅内罐和锅菜冷却器的运输模型,该锅碗菜冷却器已从马里和卢旺达的17个现场试验中验证,最大误差低于6%。结果表明,锅内罐和锅菜装置分别消耗1.96和2.85 L /天水。进行了参数研究以评估制冷效率和日常用水量的影响受到储存在冷却器中的装置,局部风速和蔬菜的质量的影响。尽管对对流加热增加,但增加了当地风速对制冷效率的净积极影响。此外,植物质量的数量对日常用水量的影响忽略不计。模型的见解表明,对于较大的设备,耗水量更有效率。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第12期|120270.1-120270.13|共13页
  • 作者单位

    Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge MA 02139 USA Department of Chemical Engineering Massachusetts Institute of Technology Cambridge MA 02139 USA;

    Department of Chemical Engineering Massachusetts Institute of Technology Cambridge MA 02139 USA D-Lab Massachusetts Institute of Technology Cambridge MA 02139 USA;

    Department of Architecture Massachusetts Institute of Technology Cambridge MA 02139 USA D-Lab Massachusetts Institute of Technology Cambridge MA 02139 USA;

    D-Lab Massachusetts Institute of Technology Cambridge MA 02139 USA;

  • 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

    Horticulture; Evaporative cooling; Postharvest vegetable storage; Transport modelling; Global development;

    机译:园艺;蒸发冷却;采后蔬菜储存;运输建模;全球发展;

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