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Heat transfer enhancement with laminar pulsating nanofluid flow in a wavy channel

机译:波浪通道中层流脉动纳米流体的传热增强

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In this study, the heat transfer characteristics of Al_2O_3-water based nanofluids in a wavy mini-channel under pulsating inlet flow conditions are investigated numerically. The simulations are performed for nanofluid volume fractions, pulsating frequency and amplitude while the other parameters are kept constant by using control volume based cfd solver. The flow is both thermally and hydrodynamically developing while the channel walls are kept at a constant temperature. Results indicate that there is a good potential in promoting the thermal performance enhancement by using the nanoparticles under pulsating flow. Pulsation in nanofluids is a new idea for enhancement of heat transfer. Furthermore, the pulsating flow has an advantage to prevent sedimentation of nanoparticles in the base fluid. Results show that the heat transfer performance increases significantly with increase in nanoparticle volume fraction and with the amplitude of pulsation while the pulsation frequencies have a slight effect. In the pulsating flow conditions the combined effect of pulsation and nanoparticles is favorable for the increasing Nusselt number when compared to the steady flow case. The obtained results are given as dimensionless parameters.
机译:在这项研究中,数值研究了脉动入口流条件下波浪状微通道中Al_2O_3-水基纳米流体的传热特性。通过使用基于控制体积的cfd求解器,对纳米流体的体积分数,脉动频率和幅度进行了仿真,而其他参数则保持不变。在通道壁保持恒定温度的同时,流动同时在热力和流体动力两方面发展。结果表明,通过在脉动流下使用纳米颗粒,具有促进热性能增强的良好潜力。纳米流体中的脉动是增强传热的新思路。此外,脉动流具有防止纳米粒子在基础流体中沉降的优点。结果表明,随着纳米颗粒体积分数的增加和脉动幅度的增加,传热性能显着提高,而脉动频率的影响却很小。在脉动流动条件下,与稳定流动的情况相比,脉动和纳米颗粒的综合作用有利于增加Nusselt数。获得的结果作为无量纲参数给出。

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