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An investigation on the forced convection heat transfer in the gap of two rotating disks with laminar inflow

机译:具有层流入的两个旋转盘间隙强制对流传热的研究

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This study presents forced convection in the gap between two rotating disks with the laminar radial inward flow. The disk surfaces are held at a constant temperature different from the temperature of the fluid flowing. The disks' surfaces may also receive a heat flux. The temperature of the fluid flowing in the gap is predicted by solving the coupled equations of momentum, energy, and continuity in cylindrical coordinate numerically. The finite difference method is used to discretize the energy equation into nonlinear algebraic equations. The tridiagonal matrix algorithm is employed to solve the resulting algebraic equations. Predominantly, throughflow Reynolds number, rotational Reynolds number, gap ratio, speed ratio, and Peclet number are the parameters that affect the temperature distribution for the fixed disk temperature and for the heat flux boundary conditions. The Nusselt number compares reasonably well with the numerical results of other investigators. The heat flow into the fluid is higher for corotating disks than for contra-rotating disks for both constant temperatures as well as heat flux boundary conditions. This is the first investigation that predicts temperature distribution due to forced convection in the gap of two rotating disks with laminar inflow.
机译:该研究介绍了具有层径向向内流动的两个旋转盘之间的间隙中的强制对流。磁盘表面保持在与流体流动的温度不同的恒定温度。磁盘表面还可以接收热通量。通过求解数动量,能量和圆柱形坐标的连续性的耦合方程来预测流动中流动的流体的温度。有限差分法用于将能量方程离散到非线性代数方程中。采用三角形矩阵算法来解决所得到的代数方程。主要是,通过流雷诺数,旋转雷诺数,间隙比,速比和Peclet数是影响固定盘温度和热通量边界条件的温度分布的参数。与其他调查人员的数值结果相比,营养数比较好。对于卡托磁盘而言,热流进入流体的热流量比对于恒定温度以及热通量边界条件的对抗旋转盘。这是第一次研究,该研究预测了由于具有层流入的两个旋转盘的间隙中的强制对流而预测温度分布。

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