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The magnetohydrodynamic (MHD) flow under slip conditions over a shrinking sheet is solved analytically. The solution is given in a closed form equation and is an exact solution of the full governing Navier-Stokes equations. Interesting solution behavior & observed with multiple solution branches for certain parameter domain. The effects of the mass transfer, slip, and magnetic parameters are discussed. 相似文献
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发展了一个可分辨大气临近空间且采用谱元数值计算技术的大气数值模式SEMANS(Spectral Element Model with Atmospheric Near Space resolved),并对模式模拟能力进行检验.数值模式采用立方体球面投影坐标,每个投影面分解为81个局地元,在元内利用8次Gauss-Lobatto-Legendre插值多项式对变量进行谱离散;模式大气在铅直方向分为66层,大气顶气压取为4.5×10-6 hPa.进行了10年积分试验,利用ECMWF(European Center for Medium-Range Weather Forecasts)ERA-Interim再分析数据集和COSPAR(Committee on Space Research)国际参考大气1986对SEMANS模拟结果进行初步检验.结果表明,模式模拟出30 hPa等压面上北半球纬向2波特征及南半球纬向1波特征;模式能模拟出100 hPa和0.001 hPa等压面附近的低温区及1 hPa等压面附近和0.0001 hPa等压面高度之上的高温区;模式还模拟出0.001 hPa等压面高度以下1月及7月纬向平均纬向风随高度分布的主要特征. 相似文献
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The unsteady viscous flow over a continuously shrinking surface with mass suction is studied. The solution is fortunately an exact solution of the unsteady Navier-Stokes equations. Similarity equations are obtained through the application of similarity transformation techniques. Numerical techniques are used to solve the similarity equations for different values of the mass suction parameters and the unsteadiness parameters. Results show that multiple solutions exist for a certain range of mass suction and unsteadiness parameters. Quite different flow behaviour is observed for an unsteady shrinking sheet from an unsteady stretching sheet. 相似文献
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