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- W3115423555 abstract "分子动力学模拟是研究纳米流体的输运特性的重要手段, 但计算量庞大. 为研究能体现流动传热过程的大体系纳米流体的输运特性, 本文对基液采用连续介质假设, 将基液的势能拟合在纳米团簇的势能中, 大幅度减小了计算量, 使得大体系输运特性的模拟成为可能, 且模拟结果与多组实验结果吻合较好. 采用此方法模拟研究了速度梯度剪切对Cu-H2O纳米流体颗粒聚集过程和聚集特性的影响, 进而对Cu-H2O纳米流体在流动传热过程中的热导率和黏度进行了模拟计算, 定量揭示了宏观流动传热过程中不同的速度梯度、速度、平均温度和温度梯度对于Cu-H2O纳米流体热导率和黏度的影响." @default.
- W3115423555 created "2021-01-05" @default.
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- W3115423555 date "2015-01-01" @default.
- W3115423555 modified "2023-09-25" @default.
- W3115423555 title "Simulation studies on the transport properties of Cu-H2O nanofluids based on water continuum assumption" @default.
- W3115423555 doi "https://doi.org/10.7498/aps.64.196601" @default.
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