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On the development of an innovative adsorber plate heat exchanger for adsorption heat transformation processes; an experimental and numerical study

机译:作者:张莹莹,王莹,王莹,王莹,王莹,王莹莹实验和数值研究

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摘要

An innovative adsorber plate heat exchanger (APHE), which is developed for application in adsorption heat pumps, chillers and thermal energy storage systems, is introduced. A test frame has been constructed as a representative segment of the introduced APHE for applying loose grains of AQSOA-Z02. Adsorption kinetic measurements have been carried out in a volumetric large-temperature-jump setup under typical operating conditions of adsorption processes. A transient 2-D model is developed for the tested sample inside the setup. The measured temporal uptake variations with time have been fed to the model, through which a micro-pore diffusion coefficient at infinite temperature of 2 E-4 [m~2s~(-1)] and an activation energy of 42.1 [kJ mol~(-1)] have been estimated. A 3-D model is developed to simulate the combined heat and mass transfer inside the APHE and implemented in a commercial software. Comparing the obtained results with the literature values for an extruded aluminium adsorber heat exchanger coated with a 500 μm layer of the same adsorbent, the differential water uptake obtained after 300 s of adsorption (8.2 g/100 g) implies a sound enhancement of 310%. This result proves the great potential of the introduced APHE to remarkably enhance the performance of adsorption heat transformation appliances.
机译:介绍了一种用于吸附热泵,冷却器和热能存储系统中的用于应用的创新的吸附器板换热器(APHE)。测试框架已被构造为引入的APHE的代表区段,用于施加AQSOA-Z02的松散晶粒。在吸附过程的典型操作条件下,在体积大型跳转装置中进行了吸附动力测量。为安装内的测试样品开发了瞬态2-D模型。具有时间的测量的时间摄取变化已被馈送到模型,通过该模型,通过该模型,在2e-4 [m〜2s〜(-1)的无限温度下微孔扩散系数和42.1 [kj mol〜]的激活能量。 (-1)]估计。开发了3D模型以模拟APHE内部的综合热量和质量传递,并在商业软件中实现。将得到的结果与涂有500μm层相同吸附剂的挤出铝吸附器热交换器的文献值进行比较,在吸附300μs(8.2g / 100g)后获得的差动水吸收意味着声音增强310% 。该结果证明了介绍APHE的巨大潜力,以显着提高吸附热变换设备的性能。

著录项

  • 来源
    《Energy》 |2020年第15期|118272.1-118272.13|共13页
  • 作者单位

    Laboratory of Sorption Processes Faculty of Mechanical Engineering East Bavarian Technical University of Applied Sciences (OTH-Regensburg) Calgenberg Street 30 93053 Regensburg Germany;

    TUM Campus Straubing for Biotechnology and Sustainability Chair Regenerative Energy Systems Technical University of Munich Schulgasse 16 94315 Straubing Germany;

    Laboratory of Sorption Processes Faculty of Mechanical Engineering East Bavarian Technical University of Applied Sciences (OTH-Regensburg) Calgenberg Street 30 93053 Regensburg Germany;

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

    Adsorber heat exchanger; Plate heat exchanger; Adsorption kinetics; Dynamic simulation;

    机译:吸附器热交换器;板式换热器;吸附动力学;动态仿真;

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