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Analysis of heat and mass transfer between air and falling film desiccant for different flow configurations in the presense of ultrafine particles.

机译:在超细颗粒的存在下,分析了不同流动形态下空气与降膜干燥剂之间的传热和传质。

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摘要

This work focuses on the enhancement of heat and mass transfer between air and falling desiccant film for different flow channel configurations. Cu-Ultrafine particles are added to the desiccant film to investigate the enhancement in heat and mass transfer between air and desiccant film for dehumidification and cooling processes of the air and regeneration of desiccant film. A detailed comparative study between parallel and counter flow channels is performed using a parametric study to investigate the enhancements in dehumidification, cooling, and regeneration processes in terms of the pertinent parameters. The results reveal that the parallel flow arrangement provides better dehumidification and cooling for the air than the counter flow channel for a wide range of parameters.; Next, the inclined parallel and counter flow configurations are investigated using an Alternating Direction Implicit (ADI) and successive over-relaxation methods to discretize the vorticity and stream-function equations, respectively. A parametric study is employed to investigate the inclination angle effects in enhancing the heat and mass transfer in terms of the controlling parameters. It is shown that inclination angle plays a significant role in enhancing the dehumidification, cooling, and regeneration processes.; Finally, the enhancements in heat and mass transfer in cross flow channel between air and desiccant film is examined based on a parametric study to investigate the dehumidification and cooling processes of the air in terms of the pertinent controlling parameters. These parameters are air and desiccant Reynolds numbers, dimensions of the channel, volume fraction of Cu-ultrafine particles, and thermal dispersion effects. It is found that an increase in the Cu-volume fraction enhances dehumidification and cooling capabilities and produces more stable Cu-desiccant film.
机译:这项工作的重点是针对不同的流道配置,提高空气与下落的干燥剂膜之间的传热和传质。将Cu-Ultrafine颗粒添加到干燥剂膜中,以研究空气与干燥剂膜之间的传热和传质的增强,以用于空气的除湿和冷却过程以及干燥剂膜的再生。使用参数研究对平行和逆流通道之间进行了详细的比较研究,以根据相关参数研究除湿,冷却和再生过程的增强。结果表明,在各种参数范围内,平行流布置比逆流通道为空气提供了更好的除湿和冷却效果。接下来,使用交替方向隐式(ADI)和连续过松弛方法研究倾斜的平行和逆流配置,以分别离散涡度方程和流函数方程。根据控制参数,采用参数研究来研究倾斜角对增强传热和传质的影响。结果表明,倾斜角在增强除湿,冷却和再生过程中起着重要作用。最后,基于参数研究研究了空气与干燥剂薄膜之间的横流通道中传热和传质的增强,以根据相关的控制参数研究空气的除湿和冷却过程。这些参数是空气和干燥剂的雷诺数,通道的尺寸,超细铜颗粒的体积分数以及热分散效应。已经发现,Cu体积分数的增加增强了除湿和冷却能力,并且产生了更稳定的Cu干燥剂膜。

著录项

  • 作者

    Ali, Ahmad A.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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