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首页> 外文期刊>Journal of engineering physics and thermophysics >NUMERICAL ANALYSIS OF SPATIAL UNSTEADY REGIMES OF CONJUGATE CONVECTIVE-RADIATIVE HEAT TRANSFER IN A CLOSED VOLUME WITH AN ENERGY SOURCE
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NUMERICAL ANALYSIS OF SPATIAL UNSTEADY REGIMES OF CONJUGATE CONVECTIVE-RADIATIVE HEAT TRANSFER IN A CLOSED VOLUME WITH AN ENERGY SOURCE

机译:能量封闭体积中共轭对流-辐射换热的空间非稳态数值分析。

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Unsteady regimes of convective-radiative heat transfer in a cubic enclosure with finitely thick heat-conducting walls in the presence of a constant-temperature energy source have been modeled mathematically under the conditions of convective heat exchange with the environment. A mathematical model has been formulated in dimensionless variables "vector potential-vorticity vector-temperature; " the model was realized numerically by the finite-difference method. An analysis of radiative heat transfer has been made on the basis of the surface-radiation approximation with the balance method in Polyak's version. Three-dimensional temperature and velocity fields and dependences for the average Nusselt number have been obtained; they reflect the influence of the reduced emissivity factor of interior surfaces of enclosing walls, of the relative thermal conductivity, and of the unsteadiness factor on the flow regimes and heat transfer.
机译:在与环境进行对流换热的条件下,已经在数学模型中对存在恒温能量源的具有有限厚导热壁的立方外壳中的对流辐射传热的非稳态进行了数学建模。已经在无量纲变量“矢量势-涡度矢量-温度”中建立了数学模型;该模型是通过有限差分法数值实现的。在Polyak版本的平衡辐射法的基础上,根据表面辐射近似值对辐射热传递进行了分析。已经获得了三维温度和速度场以及对平均努塞尔数的依赖性。它们反映了封闭壁内表面降低的发射率,相对导热率以及不稳定因素对流态和传热的影响。

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