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Diffractive gratings to improve TiAlN based spectrally selective solar absorbers

机译:衍射光栅以改善基于TiAln的光谱选择性太阳能吸收器

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Based on an optimized TiAlN multilayer structure achieving high absorption and low thermal emission at temperatures above 500°C for CSP receivers, the authors demonstrate that - sub-wavelength period gratings associated with the multilayer can further increase the absorption and thus the efficiency of the CSP system. The C-method (Chandezon Method) is used to theoretically optimize the grating profiles. An experimental demonstration of the combination of lithographic grating fabrication and absorptive layer deposition using Inconel 625 as substrates is also presented. Experimental results show that the microtexturing increases the absorption from 91% to 95% while the emissivity at 550°C is kept at an acceptable level, increasing from 32% to 38%, representing an enhancement of almost 3% of the photothermal efficiency in comparison to non-structured coatings. Textured absorbers were annealed in air at 500°C and demonstrated high thermal stability of their optical properties during more than 336h. Textured absorber would also be greatly efficient for CSP plants working at lower temperature (250-300°C), such as linear Fresnel CSP for process heat production, since optical properties and thermal stability will be excellent at these temperatures.
机译:基于优化的TiAlN多层结构实现在温度高于500℃CSP接收机高吸收和低的热排放,作者表明, - 与多层相关联的子波长周期光栅可进一步增加CSP的吸收,因此效率系统。的C-方法(Chandezon方法)用于理论上优化光栅轮廓。光刻光栅的制造和使用铬镍铁合金625作为底物吸收层沉积的组合的实验示范还提出。实验结果表明,该微观增加了从91%至95%的吸收,而在550℃下辐射率保持在一个可接受的水平,增加了从32%至38%,占的光热效率几乎3%在对比增强非结构涂层。纹理化吸收剂在空气中在500℃下退火,并在比336H更证实它们的光学性质的高的热稳定性。纹理化吸收剂也将是CSP植物在较低温度下(250-300℃)的工作,诸如线性菲涅尔CSP工艺产热大大有效的,因为光学特性和热稳定性良好,在这些温度。

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