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Construction of an innovative adsorbent bed configuration in the adsorption chiller part 2. experimental research of coated bed samples

机译:吸附冷水机构中的创新吸附床配置的构建2.涂层床样品的实验研究

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摘要

Enhancement of heat transfer conditions in the adsorption bed volume is one of the crucial tasks of improving adsorption chiller energy efficiency. The promising method is a modification of the heat exchanger boundary layer with thermally conductive glue. It ensures removing gaseous spaces, which strongly limit heat transfer from water to sorbent bed and in the opposite direction. Previously defined guidelines to build novel coated construction of adsorption beds published in Part 1 of this paper were applied to prepare coated bed samples and conduct experimental research. The thermal properties of the sorbent samples were examined with the laser flash method. Silica gel was used as a sorbent and two different kinds of epoxy resins were applied. Moreover, the scanning electron microscope (SEM) was employed to study the specific surface of the coated samples. The carried out analyses allowed to validate the selection criterion of coated bed components and indicate the sample with the best thermal prop-erties. The maximum thermal conductivity of the coated layer was 0.533 W/(m·K) and it was obtained for a sample of silica gel with granulation of 710-800μm with ER2 epoxy.
机译:吸附床体积中传热条件的增强是提高吸附冷却器能效的关键任务之一。有希望的方法是具有导热胶水的热交换器边界层的改变。它确保了去除气体空间,这强烈地将热量从水中的热传递到吸附剂床和相反方向。以前定义了在本文第1部分中发表的吸附床的新型涂层建造的指南被应用于制备涂层床样品并进行实验研究。用激光闪光法检查吸附剂样品的热性质。硅胶用作吸附剂,并施加两种不同种类的环氧树脂。此外,使用扫描电子显微镜(SEM)来研究涂覆的样品的比表面。所进行的分析允许验证涂层床组件的选择标准,并用最佳的热支线表明样品。涂层的最大导热率为0.533W /(m·k),得到硅胶样品,用ER2环氧树脂的砂浆的造粒为710-800μm。

著录项

  • 来源
    《Energy》 |2021年第1期|119123.1-119123.9|共9页
  • 作者单位

    Jan Dlugosz University in Czestochowa Faculty of Science and Technology Armii Krajowej I3//5 42-200 Czestochowa Poland;

    ACH University of Science and Technology Faculty of Energy and Fuels A. Mickiewicza 30 30-059 Cracow Poland;

    Jan Dlugosz University in Czestochowa Faculty of Science and Technology Armii Krajowej I3//5 42-200 Czestochowa Poland;

    Jan Dlugosz University in Czestochowa Faculty of Science and Technology Armii Krajowej I3//5 42-200 Czestochowa Poland;

    ACH University of Science and Technology Faculty of Energy and Fuels A. Mickiewicza 30 30-059 Cracow Poland;

    ACH University of Science and Technology Faculty of Energy and Fuels A. Mickiewicza 30 30-059 Cracow Poland;

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

    Adsorption chiller; Low-grade thermal energy; Coated adsorption bed; Thermal conductivity; Adsorbents;

    机译:吸附冷却器;低级热能;涂层吸附床;导热系数;吸附剂;

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