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Classical entropy generation analysis in cooled homogenous and functionally graded material slabs with variation of internal heat generation with temperature, and convective-radiative boundary conditions

机译:冷却的均质和功能梯度材料平板的经典熵产生分析,其中内部热量的产生随温度以及对流辐射边界条件而变化

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This article investigates the classical entropy generation in cooled slabs. Two types of materials are assumed for the slab: homogeneous material and FGM (functionally graded material). For the homogeneous material, the thermal conductivity is assumed to be a linear function of temperature, while for the FGM slab the thermal conductivity is modeled to vary in accordance with the rule of mixtures. The boundary conditions are assumed to be convective and radiative concurrently, and the internal heat generation of the slab is a linear function of temperature. Using the DTM (differential transformation method) and resultant temperature fields from the DTM, the local and total entropy generation rates within slabs are derived. The effects of physically applicable parameters such as the thermal conductivity parameter for the homogenous slab, β, the thermal conductivity parameter for the FGM slab, γ, gradient index, j, internal heat generation parameter, Q, Biot number at the right side, Nc_2, conduction-radiation parameter, Nr_2, dimensionless convection sink temperature, δ, and dimensionless radiation sink temperature, η, on the local and total entropy generation rates are illustrated and explained. The results demonstrate that considering temperature- or coordinate-dependent thermal conductivity and radiation heat transfer at both sides of the slab have great effects on the entropy generation.
机译:本文研究了冷却平板中的经典熵生成。假定板有两种材料:均质材料和FGM(功能梯度材料)。对于均质材料,假定导热系数是温度的线性函数,而对于FGM板,则将导热系数建模为根据混合物规则变化。假定边界条件同时是对流和辐射的,并且板坯的内部发热是温度的线性函数。使用DTM(微分变换方法)和DTM产生的温度场,可以得出平板内部的局部和整体熵产生率。物理适用参数的影响,例如均质板的导热系数,β,FGM板的导热系数,γ,梯度指数,j,内部发热参数,Q,右侧的比奥数,Nc_2分别说明和解释了局部和总熵产生速率下的传导辐射参数Nr_2,无量纲对流沉温度δ和无量纲对流沉温度η。结果表明,考虑与温度或坐标有关的热导率以及平板两侧的辐射传热对熵的产生有很大影响。

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