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Numerical Study on Application of CuO-Water Nanofluid in Automotive Diesel Engine Radiator

机译:CuO-水纳米流体在汽车柴油机散热器中应用的数值研究

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Application of CuO-water nanofluid with size of the nanoparticles of 20 nm and volume concentrations up 2% is numerically investigated in a radiator of Chevrolet Suburban diesel engine under turbulent flow conditions. The heat transfer relations between airflow and nanofluid coolant have been obtained to evaluate local convective and overall heat transfer coefficients and also pumping power for nanofluid flowing in the radiator with a given heat exchange capacity. In the present study, the effects of the automotive speed and Reynolds number of the nanofluid in the different volume concentrations on the radiator performance are also investigated. The results show that for CuO-water nanofluid at 2% volume concentration circulating through the flat tubes with Renf = 6000 while the automotive speed is 70 km/hr, the overall heat transfer coefficient and pumping power are approximately 10% and 23.8% more than that of base fluid for given conditions, respectively.
机译:在湍流条件下,对雪佛兰Suburban柴油机散热器中的纳米颗粒尺寸为20 nm,体积浓度高达2%的CuO-水纳米流体的应用进行了数值研究。已经获得了气流与纳米流体冷却剂之间的传热关系,以评估局部对流和整体传热系数,以及在给定的热交换能力下,纳米流体在散热器中流动的泵浦功率。在本研究中,还研究了汽车速度和纳米流体在不同体积浓度下的雷诺数对散热器性能的影响。结果表明,当汽车速度为70 km / hr时,当浓度为2%的CuO-水纳米流体通过扁管循环通过Renf = 6000时,总传热系数和泵送功率分别约为10%和23.8 。在给定条件下分别比基础油高出%。

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