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Steady-State Energetic and Exergetic Performances of Single-Phase Natural Circulation Loop With Hybrid Nanofluids

机译:用杂交纳米流体的单相自然循环环路稳态精力和前进性能

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Energy and exergy performances of natural circulation loop (NCL) with various water-based hybrid nanofluids (Al2O3+TiO2, Al2O3+CNT, Al2O3+Ag, Al2O3+Cu, Al2O3+CuO, Al2O3+graphene) with 1% volumetric concentration are compared in this study. New thermophysical property models have been proposed for hybrid nanofluids with different particle shapes and mixture ratio. Effects of power input, loop diameter, loop height, loop inclination and heater/cooler inclination on steady-state mass flow rate, effectiveness, and entropy generation are discussed as well. Results show that both the steady-state mass flow rate and energy-exergy performance are enhanced by using the hybrid nanofluids, except Al2O3+graphene, which shows the performance decrement within the studied power range. Al2O3+Ag hybrid nanofluid shows highest enhancement in mass flow rate of 4.8% compared to water. The shape of nanoparticle has shown a significant effect on steady-state performance; hybrid nanofluid having cylindrical and platelet shape nanoparticles yields lower mass flow rate than that of spherical shape. Mass flow rate increases with the increasing loop diameter and height, whereas decreases with the increasing loop and heater/cooler inclinations. Both effectiveness and entropy generation increase with the decreasing loop diameter and height, whereas increasing the loop and heater/cooler inclinations. This study reveals that the particle shape has a significant effect on the performance of hybrid nanofluids in NCL, and the use of hybrid nanofluid is more effective for higher power.
机译:将各种水基杂交纳米流体(Al 2 O 3 + TiO 2,Al 2 O 3 + CNT,Al 2 O 3 + Ag,Al 2 O 3 + Cu,Al 2 O 3 + Cu,Al 2 O 3 + Cu,Al 2 O 3 +石墨烯)的能量和暴露性能进行比较,进行1%体积浓度在这个研究中。已经提出了具有不同颗粒形状和混合比的杂种纳米流体的新热物理模型。讨论了电力输入,环径,环高,环倾斜度和加热器/冷却器倾斜度的影响,也讨论了稳态质量流量,有效性和熵生成。结果表明,除了Al2O3 +石墨烯之外,通过使用杂合纳米流体来增强稳态质量流量和能量 - 电流性能,显示了所研究的功率范围内的性能下降。与水相比,Al2O3 + Ag杂交纳米流体显示出质量流速的最高增强率为4.8%。纳米粒子的形状显示出对稳态性能的显着影响;具有圆柱形和血小板形状纳米颗粒的杂种纳米流体产生比球形的质量较低。质量流量随着环径和高度的增加而增加,而随着环路和加热器/冷却器倾斜度的增加而降低。效果和熵产生随着环径和高度的降低而增加,而增加回路和加热器/冷却倾斜度。该研究表明,颗粒形状对NCl中杂交纳米流体的性能具有显着影响,并且杂交纳米流体的使用对于更高的功率更有效。

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