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Numerical investigation of thermodynamic properties in 2D porous silicon photonic crystals integrated in thermophotovoltaic energy conversion system

机译:热光电能量转换系统中集成的二维多孔硅光子晶体热力学性质的数值研究

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The prediction of thermodynamic properties performance in porous silicon (pSi) photonic crystals (PhCs) was studied for enhancement of light conversion into different types of energy based thermophotovoltaic energy conversion system. The unit-cell for 2D square and triangular lattices of circular air holes were formulated and solved using plane wave expansion (PWE) method. This was used to investigate the thermodynamic properties and the effect of lattice dynamic on these properties at different porosities in silicon PhCs; which are regarded as isolated and non-interacting particles systems. This was achieved by connecting density of states (DOS) and thermodynamic quantities as described in statistical physics. It revealed that irrespective of lattice type, increasing porosity ensued a decline in thermodynamic properties. Novel insights and theoretical concepts that could be integrated in thermophotovoltaic system were revealed. Regarding the square lattice, the optimum value of these properties except the free energy was obtained at R/a = 0.30 for 20% and 50% porosities, and at R/a = 0.25 for 80% porosity. Regardless of the porosity, the optimum value for the triangular lattice was found at R/a = 0.25. These characteristics have attempted to provide contributions with regards to the selection of the appropriate design for PhC in order to achieve high efficiency conversion. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了多孔硅(pSi)光子晶体(PhCs)中热力学性能的预测,以增强光转换为基于能量的不同类型的热光伏能量转换系统的能力。使用平面波扩展(PWE)方法制定和求解圆形气孔的二维正方形和三角形格子的晶胞。这用于研究硅PhC中不同孔隙率的热力学性质以及晶格动力学对这些性质的影响。被认为是孤立的非相互作用粒子系统。如统计物理学中所述,这是通过连接状态密度(DOS)和热力学量实现的。结果表明,不管晶格类型如何,孔隙率的增加都会导致热力学性质的下降。揭示了可以集成到热光伏系统中的新颖见解和理论概念。关于正方形晶格,对于20%和50%的孔隙率,在R / a = 0.30下以及对于80%孔隙率在R / a = 0.25下,获得了这些性能的最佳值,除了自由能。不管孔隙度如何,在R / a = 0.25时都可以找到三角晶格的最佳值。这些特性试图在选择适用于PhC的适当设计方面做出贡献,以实现高效转换。 (C)2018 Elsevier Ltd.保留所有权利。

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