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Solar-thermophotovoltaic systems using spectrally selective absorber/emitter based on metal-dielectric multilayer

机译:使用基于金属-电介质多层的光谱选择性吸收器/发射器的太阳能光伏系统

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摘要

In this paper, high-efficiency STPV systems are investigated using spectrally selective absorber/emitter consisted of metal-dielectric multilayer and a GaSb TPV cell. A solar-thermophotovoltaic (STPV) system is expected to as high-efficiency solar energy conversion using single-junction photovoltaic (PV) cells. However, the reached experimental system efficiency has been still low because spectral control of emitter is not sufficient. Narrowband thermal radiation from the emitter is effective for obtaining high-efficiency STPV systems, exceeding the Shockley-Queisser limit. From theoretical analysis, the narrowband thermal emitter can leads to obtain PV conversion efficiency over 45% at Q-value=30 and 1300K. The spectrally selective absorber/emitter was also investigated to obtain high η_(PV). The η_(PV)= 23.5% was estimated by the fabricated emitter spectrum, which exceeds the Shockley-Queisser limit of 19.6% for a GaSb bandgap of 0.67 eV. The entire STPV system and the power generation tests were conducted using the fabricated absorber/emitter. The total system efficiency 4.9% at 1505K was obtained under an irradiance of 109 Wcm~(-2).
机译:在本文中,使用由金属介电多层膜和GaSb TPV电池组成的光谱选择性吸收剂/发射体研究了高效STPV系统。太阳能热电(STPV)系统有望成为使用单结光伏(PV)电池的高效太阳能转换。然而,由于发射极的光谱控制不够,达到的实验系统效率仍然很低。来自发射器的窄带热辐射对于获得高效的STPV系统有效,超过了Shockley-Queisser限制。根据理论分析,在Q值= 30和1300K时,窄带热发射器可导致PV转换效率超过45%。还研究了光谱选择性吸收剂/发射体以获得高η_(PV)。 η_(PV)= 23.5%由制造的发射光谱估计,对于0.67 eV的GaSb带隙,它超过了19.6%的Shockley-Queisser极限。整个STPV系统和发电测试均使用制造的吸收器/发射器进行。在109 Wcm〜(-2)的辐射下,在1505K时,系统总效率为4.9%。

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