首页> 外文期刊>Journal of Energy Storage >Analysis of the entropy due to radiative flow of nano-encapsulated phase change materials within inclined porous prismatic enclosures: Finite element simulation
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Analysis of the entropy due to radiative flow of nano-encapsulated phase change materials within inclined porous prismatic enclosures: Finite element simulation

机译:倾斜多孔棱镜外壳内纳米封装相变材料辐射流动的熵分析:有限元模拟

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The heat transfer and fluid flow due to the interaction between the radiation and convective modes is examined. Also, the irreversibility processes within the considered system is calculated based on the second law of the thermodynamic. The Nano-Encapsulated Phase Change Materials (NEPCM) in which their core is nonadecane and their shell is polyurethane are used to formulate the worked suspension. The flow domains are prismatic enclosures and two designs (D1 and D2) based on the aspect ratio of the enclosures walls are carried out. The geometry is filled by glass balls as an isotropic porous medium. The solution methodology is based on the finite element method and a semi implicit technique is applied for the velocities. The main outcomes disclosed that the alteration of the radiation parameter reduces the melting/solidification processes. Also, using NEPCM's gives a clear improvement in the heat transfer.
机译:检查了由于辐射和对流模式之间的相互作用引起的传热和流体流动。 此外,所考虑系统内的不可逆性过程是基于热力学的第二律计算的。 纳米封装的相变材料(Nepcm),其中核是非酸橙,它们的壳是聚氨酯用于配制工作悬浮液。 流动域是棱柱形外壳,并且执行基于外壳壁的纵横比的两个设计(D1和D2)。 几何形状被玻璃球作为各向同性多孔介质填充。 解决方案方法基于有限元方法,并且对速度施加半隐式技术。 所公开的主要结果:辐射参数的改变降低了熔化/凝固过程。 此外,使用Nepcm的热传递明显改善。

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