首页> 外文期刊>WSEAS Transactions on Heat and Mass Transfer >Entropy Generation Analysis of Transient Heat Conduction in a Solid Slab with Fixed Temperature Boundary Conditions
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Entropy Generation Analysis of Transient Heat Conduction in a Solid Slab with Fixed Temperature Boundary Conditions

机译:固定温度边界条件下固体板中瞬态热传导的熵产分析

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摘要

Analysis of entropy generation rate for transient heat conduction, taking place in homogeneous solid slab with fixed temperature boundary conditions, is presented. The initial condition is defined as a constant temperature. The exact solution is solved and used to analyze the local and total entropy generation rates. Two cases, heating and cooling processes, are considered in this study. It is found that the local entropy generation rate dramatically changes at small time and slowly approaches the local entropy generation rate of steady state case. The location of minimum local entropy generation rate can be found in the slab for both heating and cooling cases. For the total entropy generation rate, it shows very high value at small time. This is due to high temperature gradient. It, then, sharply reduces and converges to the total entropy generation rate of steady state case. However, the minimum total entropy generation rate is found for heating case, while it cannot be detected for cooling case. The minimum total entropy generation rate, found in heating case, is observed that it is lower than that of steady state case. The boundary conditions clearly express the effect on the local and total entropy generation rates for transient heat conduction. However, the effect of initial condition on the entropy generation rates can be neglected, especially at large time.
机译:提出了在温度边界条件固定的均质固体平板中进行瞬态热传导的熵产生率的分析。初始条件定义为恒定温度。解决了确切的解决方案,并将其用于分析局部和总熵产生率。这项研究考虑了两种情况,即加热和冷却过程。发现局部熵产生率在很小的时间内发生巨大变化,并逐渐接近稳态情况下的局部熵产生率。对于加热和冷却情况,可以在平板中找到最小局部熵产生率的位置。对于总熵产生率,它在很小的时间内显示出很高的值。这是由于高温梯度造成的。然后,它急剧减小并收敛到稳态情况下的总熵产生率。但是,对于加热情况,发现了最小的总熵产生率,而对于冷却情况,则无法检测到。观察到在加热情况下发现的最小总熵产生率低于稳态情况。边界条件清楚地表达了瞬态热传导对局部和总熵产生率的影响。但是,可以忽略初始条件对熵产生率的影响,尤其是在较大的时间。

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