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Analysis of Combined Radiation and Forced Convection Heat Transfer in 3D Laminar Flow over an Inclined Forward Facing Step

机译:倾斜正向台阶上3D层流中辐射与强迫对流传热的组合分析

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In the current study, a numerical investigation of three-dimensional combined convection-radiation heat transfer over an inclined forward facing step (FFS) in a horizontal rectangular duct is presented. The fluid is treated as a gray, absorbing, emitting and scattering medium. To simulate the incline surface of FFS, the blocked-off method is employed in this study. The set of governing equations for gas flow are solved numerically using the CFD technique to obtain the temperature and velocity fields. Since the gas is considered as a radiating medium, all of the convection, conduction and radiation heat transfer mechanisms are presented in the energy equation. For computation of radiative term in energy equation, the radiative transfer equation (RTE) is solved numerically by the discrete ordinates method (DOM) to find the divergence of radiative heat flux distribution inside the radiating medium. The effects of optical thickness, radiation-conduction parameter and albedo coefficient on heat transfer behavior of the system are carried out.
机译:在当前的研究中,提出了在水平矩形管道中的倾斜向前台阶(FFS)上的三维组合对流-辐射热传递的数值研究。流体被视为灰色的吸收,发射和散射介质。为了模拟FFS的倾斜表面,本研究采用了封闭方法。使用CFD技术以数值方式解决了气体流动的控制方程组,以获得温度和速度场。由于气体被认为是辐射介质,因此所有对流,传导和辐射的传热机理都在能量方程中给出。为了计算能量方程中的辐射项,通过离散坐标法(DOM)对辐射传递方程(RTE)进行了数值求解,以求出辐射介质内部辐射热通量分布的发散。研究了光学厚度,辐射传导参数和反照率系数对系统传热性能的影响。

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