首页|纳米流体微射流耦合微肋通道热沉传热特性研究

纳米流体微射流耦合微肋通道热沉传热特性研究

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聚光太阳能电池工作时产生的热量对其有一定的消极影响,散热装置作为聚光太阳能电池工作过程中的必要装置,对于保证聚光条件下太阳能电池长期安全稳定高效运行有重要作用,采用纳米流体对其进行冷却是一种行之有效的途径.文中构建了一种微射流耦合微肋通道热沉,以纳米流体作为冷却介质,采用数值模拟和实验研究相结合的方法对热沉湍流传热和流动特性进行研究.通过数值模拟分别对 SiC、Al2O3、SiO2、TiO2 纳米流体与水作为冷却介质的冷却效果进行对比研究,最终选用其中冷却性能最好的SiC-W纳米流体进行实验,实验测试表明,SiC-W纳米流体相较于水有如下优势:导热系数增加约 10.2%,平均传热系数增加约 6.7%,且增加压损不超过水的 1%.由此展现了SiC-W纳米流体优越的传热性能和应用价值.
Heat Transfer Characteristics of Microjet Coupled Microfin Channel Heat Sink with Nanofluid as Cooling Fluid
The heat generated during the operation of concentrated solar cells has negative impact on them.As a necessary component in the working process of concentrated solar cells,heat dissipation devices play an important role in ensuring the long-term safe,stable,and efficient operation of solar cells under concentrated conditions.The use of nanofluids for cooling is an effective way.A micro jet coupled micro rib channel heat sink was constructed in this work,with nanofluid as the cooling medium.Turbulent heat transfer and flow characteristics of the heat sink were studied using a combination of numerical simulation and experimental research methods.Through numerical simulation,the cooling effects of SiC,Al2O3,SiO2,TiO2 nanofluids and water as cooling media were compared and discussed.Finally,the SiC-W nanofluid with the optimal cooling performance was selected for the experiment.It is experimentally shown that the SiC-W nanofluids have the several advantages as compared with water,with an increase in thermal conductivity of about 10.2%,an increase in average heat transfer coefficient of about 6.7%and an increase in pressure loss of no more than 1%of water.This study demonstrates the superior heat transfer performance and application value of the SiC-W nanofluids.

dissipate heatmicro-finmicro jetturbulence flownanofluid

王薇寒、孙健、李杰、张任平、周露亮、王艳香

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景德镇陶瓷大学,江西 景德镇 333403

散热 微肋 微射流 湍流 纳米流体

江西省自然科学基金

20202BAB204022

2024

陶瓷学报
景德镇陶瓷学院

陶瓷学报

CSTPCD北大核心
影响因子:0.7
ISSN:1000-2278
年,卷(期):2024.45(2)
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