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Numerical investigation of the energy performance of a guideless irregular heat and mass exchanger with corrugated heat transfer surface for dew point cooling

机译:带有露点冷却的波纹状传热表面的无导向不规则热质交换器能量性能的数值研究

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The paper presents an investigation into the energy performance of a novel irregular heat and mass exchanger for dew point cooling which, compared to the existing flat-plate heat exchangers, removed the use of the channel supporting guides and implemented the corrugated heat transfer surface, thus expecting to achieve the reduced air flow resistance, increased heat transfer area, and improved energy efficiency (i.e. Coefficient of Performance (COP)) of the air cooling process. CFD simulation was carried out to determine the flow resistance (K) factors of various elements within the dry and wet channels of the exchanger, while the 'finite-element' based 'Newton-iteration' numerical simulation was undertaken to investigate its cooling capacity, cooling effectiveness and COP at various geometrical and operational conditions. Compared to the existing flat-plate heat and mass exchangers with the same geometrical dimensions and operational conditions, the new irregular exchanger could achieve 32.9%-37% higher cooling capacity, dew-point and wet-bulb effectiveness, 29.7%-33.3% higher COP, and 55.8%-56.2% lower pressure drop. While undertaking dew point air cooling, the irregular heat and mass exchanger had the optimum air velocity of 1 m/s within the flow channels and working-to-intake air ratio of 0.3, which allowed the highest cooling capacity and COP to be achieved. In terms of the exchanger dimensions, the optimum height of the channel was 5 mm while its length was in the range 1-2 m. Overall, the proposed irregular heat and mass exchanger could lead to significant enhanced energy performance compared to the existing flat-plate dew point cooling heat exchanger of the same geometrical dimensions. To achieve the same amount cooling output, the irregular heat and mass exchanger had the reduced size and cost against the flat-plate ones. (C) 2016 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY license
机译:本文介绍了一种新型的用于露点冷却的不规则换热器和传热器的能量性能,与现有的平板式换热器相比,该换热器无需使用通道支撑导向装置,而是采用了波纹状的传热表面,因此期望实现减小的空气流动阻力,增加的传热面积以及改善的空气冷却过程的能量效率(即性能系数(COP))。进行了CFD模拟以确定换热器干,湿通道内各种元素的流阻(K)因子,同时进行了基于“有限元”“牛顿迭代”的数值模拟以研究其冷却能力,在各种几何和运行条件下的冷却效率和COP。与具有相同几何尺寸和运行条件的现有平板式热交换和质量交换器相比,新型不规则交换器的制冷量,露点和湿球效率可提高32.9%-37%,高29.7%-33.3% COP,且压降降低55.8%-56.2%。在进行露点空气冷却时,不规则换热器和质量交换器在流道内的最佳风速为1 m / s,进风与进风的比为0.3,可以实现最高的冷却能力和COP。就交换器尺寸而言,通道的最佳高度为5 mm,而其长度在1-2 m的范围内。总体而言,与相同几何尺寸的现有平板露点冷却换热器相比,拟议的不规则换热和换热器可显着提高能源效率。为了获得相同数量的冷却输出,与平板式换热器相比,不规则的热和质量交换器的尺寸和成本有所降低。 (C)2016作者。由Elsevier Ltd.发布。这是CC BY许可下的开放获取文章

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