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首页> 外文期刊>Renewable energy >Analysis on Al_2O_3/water nanofluid flow in a channel by inserting corrugated/perforated fins for solar heating heat exchangers
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Analysis on Al_2O_3/water nanofluid flow in a channel by inserting corrugated/perforated fins for solar heating heat exchangers

机译:通过插入波纹/穿孔散热片的太阳能加热换热器分析通道中的Al_2O_3 /水纳米流体

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AbstractImproving the efficiency is a crucial issue to introduce renewable energy as a commercial success. In the current experimental study, the hydrothermal performance of corrugated/perforated fins (CPFs) is investigation for use in plate heat exchangers as heat exchange devise in the active solar heating system. Water and Al2O3/water nanofluid (NF) are applied as working fluid. The considered factors are waviness aspect ratio, perforation diameter, nanoparticle concentration, and flow rate. Investigation of these factors leads to the implementation of more than 250 experiments. The results of studied factors show that the heat transfer coefficient of CPFs is more than that of typical ones, while the pressure drop of CPFs is lower. The optimal geometry of CPFs is obtained by using a hydrothermal performance factor. The maximum performance factor of 1.95 is recorded for the CPF with the waviness aspect ratio of 0.51 and perforation diameter of 6 mm at the flow rate of 0.117 × 10−3 m3/s. Finally, higher values of heat transfer coefficient and pressure drop are detected for Al2O3/water NFs compared to the base fluid. At the studied ranges, the maximum augmentations of 14.1% and 9.5% are detected, respectively, for heat transfer coefficient and pressure drop of 0.3 wt% NF flow.HighlightsHydrothermal performance of a channel equipped with CPFs is studied.Water and Al2O3/water nanofluids are tested as working fluid.Effects of different parameters are tested and discussed.Heat transfer and pressure drop variations are more considerable at larger 2a/l.At considered ranges, the maximum performance factor of 1.95 is recorded.
机译: 摘要 提高效率是引入可再生能源作为商业成功的关键问题。在当前的实验研究中,作为主动式太阳能加热系统中的换热设备,正在研究将波纹/穿孔翅片(CPF)的水热性能用于板式换热器。将水和Al 2 O 3 /水纳米流体(NF)用作工作流体。考虑的因素是波纹纵横比,穿孔直径,纳米颗粒浓度和流速。对这些因素的研究导致实施了250多个实验。研究因素的结果表明,CPF的传热系数比典型的大,而CPF的压降较低。 CPF的最佳几何形状是通过使用水热性能因子获得的。 CPF记录的最大性能因子为1.95,波纹纵横比为0.51,射孔直径为6mm,流速为0.117×10 − 3 m 3 / s。最后,检测到Al 2 O 3 的较高的传热系数和压降值/水NFs与基础液相比。在所研究的范围内,对于传热系数和0.3wt%NF流量的压降,最大增量分别为14.1%和9.5%。 < / ce:abstract> 突出显示 研究了配备有CPF的通道的水热性能。 水和Al 2 O 3 /水纳米流体已作为工作流体进行了测试。 测试并讨论了不同参数的效果。 在较大的2 a / <下,传热和压降变化更为明显ce:italic> l 在考虑的范围内,记录的最大性能因子为1.95。

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