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Heat transfer characteristics of free nanofluid impinging jet on flat surface with different jet to plate distance: An experimental investigation

机译:不同喷射到板距离平面撞击射流的自由纳米流体撞击喷射的传热特性:实验研究

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摘要

In the present study, the heat transfer characteristics of the impinging jet on the heated copper plate surface was investigated experimentally. Two different working coolants namely, DI water and aqueous Zinc oxide (ZnO) nanofluids with varying nanoparticle concentration (phi = 0.02%, 0.04%, 0.06%, and 0.1%) were used during the experiment. The ZnO nanofluids were synthesized by two-step methods. The experiments were conducted by impinging free circular jet fluids (water and ZnO nanofluids) on a 90 mm diameter and 3 mm thick heated copper plate. The jet parameters viz. nozzle to plate distance (2-7.5), the flow rate of fluids and nanoparticle concentrations were varied during experiments. This analysis reveals that there is a significant enhancement in heat transfer coefficient (HTC) for ZnO nanofluids coolant when compared with water coolant. During experiments, Reynolds number was varied in the range from 2192 to 9241. A theoretical correlation was developed after analyzing experimental data. The experimental results were found to be in good agreement with results obtained from theoretical correlation.
机译:在本研究中,实验研究了加热铜板表面上的撞击射流的传热特性。在实验期间使用两种不同的工作冷却剂,即具有不同纳米颗粒浓度(PHI = 0.02%,0.04%,0.06%,0.06%)的二水和氧化锌(ZnO)纳米流体。通过两步方法合成ZnO纳米流体。通过将自由圆形喷射流体(水和ZnO纳米流体)撞击在90mm直径和3mm厚的加热铜板上来进行实验。喷射参数viz。喷嘴到板距(2-7.5),在实验期间,流体的流速和纳米颗粒浓度变化。该分析表明,与水冷却剂相比,ZnO纳米流体冷却剂的传热系数(HTC)具有显着增强。在实验期间,雷诺数在2192至9241的范围内变化。分析实验数据后显影性相关。发现实验结果与理论相关所获得的结果吻合良好。

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