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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Heat transfer performance investigation on a finned tube adsorbent bed with a compound parabolic concentrator (CPC) for solar adsorption refrigeration
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Heat transfer performance investigation on a finned tube adsorbent bed with a compound parabolic concentrator (CPC) for solar adsorption refrigeration

机译:具有复合抛物型浓缩器(CPC)对太阳吸附制冷的翅片管吸附床的传热性能研究

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摘要

In this work, activated carbon-methanol was used as the working pair in a solar adsorption refrigeration system (SAR). The thermal conductivity of the activated carbon was very poor, resulting in performance delays of the system. To improve the performance of the heat transfer for the adsorbent bed, a new adsorbent bed with finned tubes was designed and studied using commercial computational fluid dynamics (CFD) software. Two-dimensional (2D) numerical models of two kinds of adsorbent tubes (finned and smooth tubes) were constructed and simulated. The two different 2D numerical models had similar cell numbers and the same boundaries and initial conditions. An experiment for a grid verification model of the designed finned tube was conducted, and the model of the finned tube was validated via comparison between the numerical and experimental results. In addition, the heat performances of the newly designed finned tube and the smooth tube were compared in this paper. The temperature gradients of the activated carbon in the smooth and finned tubes were approximately 28.1 degrees C and 4 degrees C during isosteric heating, respectively. The conclusions are that the fins had a large effect on the thermal performance of SAR, and the possibility that the methanol was adsorbed again by the activated carbon of the lower temperature part in the finned tubes during isobaric heating was decreased greatly. Moreover, the radial heat loss of the finned tube wall was also less than the smooth tube, which may be an important factor for improving the performance of the system effectively.
机译:在这项工作中,使用活性炭 - 甲醇作为太阳能吸附制冷系统(SAR)中的工作对。活性炭的导热率非常差,导致系统的性能延迟。为了改善吸附剂床的传热性能,使用商业计算流体动力学(CFD)软件设计和研究了具有翅片管的新吸附床。构建和模拟两种吸附管(翅片和光滑管)的二维(2D)数值模型。两种不同的2D数值模型具有类似的单元数和相同的边界和初始条件。进行了设计的翅片管的电网验证模型的实验,并且通过数值和实验结果之间的比较验证了翅片管的模型。此外,在本文中比较了新设计的翅片管和光滑管的热性能。在圆润和翅片管中的活性炭的温度梯度分别在替代加热期间约为28.1℃和4℃。结论是,鳍片对SAR的热性能具有很大的影响,并且通过在异室加热期间翅片管中较低温度部分的活性炭再次吸附甲醇的可能性大大差异。此外,翅片管壁的径向热量损失也小于光滑管,这可能是有效地提高系统性能的重要因素。

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