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Natural convection heat transfer utilizing nanofluid in a cavity with a periodic side-wall temperature in the presence of a magnetic field

机译:在存在磁场的情况下,利用具有周期性侧壁温度的空腔中的纳米流体进行自然对流换热

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Natural convection in a square cavity filled with electrically conducting nanofluid that is driven by a periodic temperature profile along on of the vertical wall is studied numerically. The top and bottom horizontal walls are kept adiabatic. The right wall is maintained at low temperature while the temperature of the opposing vertical wall varies sinusoidally with time about a mean temperature. Flow and heat transfer performance through the enclosure is examined over a wide range of oscillation amplitudes and frequencies, Hartmann number, Rayleigh number and solid volume fraction at Prandtl number Pr = 6.2. The results show that oscillation amplitude, A, and frequency, f, of the vertical wall significantly affect the response of heat transfer inside the cavity. For A 0.5, the forcing frequency is found to remain almost constant at f = 2.5, while it shifts towards a higher frequency f = 5 for A = 0.5. At low Rayleigh number, Nusselt number is found to be independent of Rayleigh and Hartman numbers, while at higher Rayleigh number, convective flow dominates, and Nusselt number becomes independent of Hartmann number. In this regime, the Nusselt scaling with Rayleigh number agrees well with the exponent predicted by theory of natural convection in a cavity without magnetic field or nanoparticles, with a value of 1/4. With the increase of solid volume fraction, the heat transfer rate may increase or decrease depending on the values of Hartmann and Rayleigh numbers.
机译:数值研究了填充有导电纳米流体的方腔中的自然对流,该方腔由周期性温度曲线沿垂直壁的开端驱动。顶部和底部水平壁保持绝热。右壁保持低温,而相对的垂直壁的温度则在大约平均温度附近随时间呈正弦变化。在大范围的振幅和频率,哈特曼数,瑞利数和固体体积分数(普朗特数Pr = 6.2)下检查通过外壳的流动和传热性能。结果表明,垂直壁的振动幅度A和频率f显着影响腔体内传热的响应。当A> 0.5时,发现强迫频率在f = 2.5时几乎保持恒定,而当A <= 0.5时,强迫频率向较高的频率f = 5偏移。在较低的瑞利数下,发现努塞尔特数与瑞利和哈特曼数无关,而在较高瑞利数下,对流占主导地位,而努塞尔特数与哈特曼数无关。在这种情况下,具有瑞利数的Nusselt标度与无磁场或纳米粒子的空腔中自然对流理论预测的指数非常吻合,数值为1/4。随着固体体积分数的增加,传热速率可能会根据Hartmann和Rayleigh数的值而增加或减少。

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