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HEAT TRANSFER INVESTIGATION OF AN ADDITIVELY MANUFACTURED MINICHANNEL HEAT EXCHANGER

机译:人工制造的微通道换热器的传热研究

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This study investigates the thermal performance of laminar single-phase flow in an additively manufactured minichannel heat exchanger both experimentally and numerically. Distilled water was employed as the working fluid, and the minichannel heat exchanger was made from aluminum alloy (AISi 10Mg) through direct metal laser sintering (DMLS). The minichannel was designed with a hydraulic diameter of 2.86 mm. The Reynolds number ranged from 175 to 1360, and the heat exchanger was tested under two different heat fluxes of 1.5 kWm~(-2) and 3 kWm~(-2). A detailed experiment was conducted to obtain the thermal properties of AlSi10Mg. Furthermore, the heat transfer characteristics of the minichannel heat exchanger was analyzed numerically by solving a three-dimensional conjugate heat transfer using the COMSOL Multiphysics® to verify the experimental results. The experimental results were also compared to widely accepted correlations in literature. It is found that 95% and 79% of the experimental data are within ±10% range of both the simulation results and the values from the existing correlations, respectively. Hence, the good agreement found between the experimental and simulation results highlights the possibility of the DMLS technique as a promising method for manufacturing future multiport minichannel heat exchangers.
机译:本研究从实验和数值上研究了增材制造的微通道换热器中层流单相流的热性能。蒸馏水用作工作流体,微通道热交换器由铝合金(AISi 10Mg)通过直接金属激光烧结(DMLS)制成。微型通道的液压直径设计为2.86 mm。雷诺数在175至1360之间,并在1.5 kWm〜(-2)和3 kWm〜(-2)两种不同的热通量下测试了热交换器。进行了详细的实验以获得AlSi10Mg的热性能。此外,通过使用COMSOLMultiphysics®解决三维共轭传热问题,对微通道换热器的传热特性进行了数值分析,以验证实验结果。还将实验结果与文献中广泛接受的相关性进行了比较。发现95%和79%的实验数据分别在模拟结果和现有相关值的±10%范围内。因此,实验结果和模拟结果之间的良好一致性突显了DMLS技术作为制造未来多端口微型通道热交换器的有前途方法的可能性。

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