首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >An experimental investigation on thermo-physical properties and overall performance of MWCNT/heat transfer oil nanofluid flow inside vertical helically coiled tubes
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An experimental investigation on thermo-physical properties and overall performance of MWCNT/heat transfer oil nanofluid flow inside vertical helically coiled tubes

机译:垂直螺旋盘管内MWCNT /传热油纳米流体流动的热物理性质和整体性能的实验研究

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摘要

This study deals with an experimental investigation on the thermo-physical properties and overall performance of MWCNT/heat transfer oil nanofluids flow inside vertical helically coiled tubes. Data were acquired for the laminar flow in the thermal entrance region, while the temperature of the tube wall was constant at around 95. °C leading to isothermal boundary condition. Pure heat transfer oil and nanofluids with particle weight concentrations of 0.1%, 0.2% and 0.4% were utilized as the working fluids. It was observed that most conventional models fail to predict the thermo-physical properties of the applied nanofluids accurately, especially in case of the specific heat capacity. Therefore, rough empirical correlations were developed to estimate such properties for the working fluids. In addition, the overall performance of the tested helically coiled tubes was assessed based on the performance index and optimum work conditions were determined. High overall performance index of up to 6.4 was obtained for the simultaneous utilization of both heat transfer enhancement techniques considered in this paper. Hence, applying the methods studied here could be considered as a good choice in practical applications.
机译:这项研究涉及对垂直螺旋管内流动的MWCNT /传热油纳米流体的热物理性质和整体性能的实验研究。获取了热入口区域的层流数据,而管壁的温度恒定在约95°C,导致等温边界条件。颗粒浓度分别为0.1%,0.2%和0.4%的纯传热油和纳米流体用作工作流体。观察到,大多数常规模型无法准确预测所施加纳米流体的热物理性质,特别是在比热容量的情况下。因此,开发了粗略的经验相关性以估计工作流体的这种特性。此外,基于性能指标评估了被测螺旋管的整体性能,并确定了最佳工作条件。对于同时考虑的两种传热增强技术,获得了高达6.4的高总体性能指数。因此,在实际应用中,应用此处研究的方法可以认为是一个不错的选择。

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