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22篇 您的检索式:作者名="Otanicar"
    题名 作者 年代 出处 被引量
1Nanofluid-based optical filter optimization for PV/T systems显示文摘Optical filters are essential in a wide range of applications,including optical communications,electronics,lighting,optical sensors and photography.This article presents recent work which indicates that optical filters can be created from specialized nanoparticle suspensions.Specifically,this article describes a theoretical optimization process for designing nanofluid-based filters for hybrid solar photovoltaic/thermal(PV/T)applications.This particular application is suitable because nanofluids can be utilized as both volumetric solar absorbers and flowing heat transfer mediums.The nanofluid filters described in this work compare favorably with conventional optical filters for five photovoltaic(PV)cell alternatives:InGaP,CdTe,InGaAs,Si,and Ge.This study demonstrates that nanofluids make efficient,compact and potentially low-cost,spectrally selective optical filters.Robert A Taylor Todd Otanicar Gary Rosengarten 2012Light(Science & Applications)2012,1,1:12
2Optical properties of liquids for direct absorption solar thermal energy systems 显示文摘Otanicar T P Phelan P E Jay S G 2009Solar Energy2009,83,7:1
3显示文摘Robert A Taylor Patrick E Phelan Todd P Otanicar Nanofluid optical property characterization:towards efficient di- rect absorption solar collectors 2011Nanoscale Research Let- ters2011,6,:1
4Optical properties of liquids for direct absorption solar thermal energy systems 显示文摘T P Otanicar P E Phelan J S Golden 2009Solar Energy2009,83,7:1
5Controllable Optical Properties of Polystyrene/PNIPAM-Gold Composite Nanoparticles显示文摘Chinmay Telang Todd Otanicar Lenore Dai Patrick Phelan Rajasekaran Swaminathan Mingmeng Zhang 2015Plasmonics2015,,1:1
6Nanofluid-based direct absorption solar collector显示文摘Otanicar T Phelan P E Prasher R S 2010Journal of Renewable Sustainable Energy2010,3,2:1
7Nanofluid-based direct absorption solar collector显示文摘OTANICAR T P PHELAN P E PRASHER R S 2010Journal of Renewable and Sustainable Energy2010,2,3:1
8Nanofluid-based direct absorption solar collector显示文摘Otanicar T P Phelan P E Prasher R S 2010Journal of Renewable and Sustainable Energy2010,2,:1
9Nanofluid optical property characterization: Towards efficient direct absorption solar collectors 显示文摘Taylor R A Phelan P E Otanicar T P 2011Nanoscale Research Letters2011,6,1:1
10Comparative economic analysis of concentrating solar technologies显示文摘Brandon Duquette Todd Otanicar 2011Journal of Solar Energy Engineering2011,135,135:1
11Optical Properties of Liquids for Direct Absorption Solar Thermal Energy Systems 显示文摘Otanicar T P Phelan P E Golden J S 2009Solar Energy2009,83,7:1
12Optical properties of liquids for direct absorption solar thermal energy systems显示文摘Otanicar T P Phelan P E Golden J S 2009Solar Energy2009,83,7:1
13Optical properties of liquids for direct absorption solar thermal energy systems显示文摘Otanicar T P Phelan P E Golden J S 2009Solar Energy2009,83,7:1
14Comparative environmental and economic analysis of conventional and nanofluid solar hot water technologies显示文摘Otanicar T P Golden J S 2009Environmental Science and Technology2009,43,15:1
15Nanofluid-based direct absorption solar collector 显示文摘Otanicar Todd P Phelan Patrick E Prasher Ravi S 2010Journal of Renewable and Sustainable Energy2010,2,03:1
16Applicability of nanofluids in high flux solar collectors 显示文摘Taylor Robert A Phelan Patrick E Otanicar Todd P 2011Journal of Renewable and Sustainable Energy2011,3,02:1
17Fea- sibility of nanofluid-based optical filters显示文摘Taylor Robert A Otanicar Todd P Herukerrupu Yasitha 2013Applied Optics2013,52,7:1
18Nanofluid-based direct absorption solar collector 显示文摘Otanicar T P Phelan P E 2010Journal of Renewable and Sustainable Energy2010,2,03:1
19Nanofluid optieal property characterization: towards efficient direct absorption solar collectors 显示文摘Taylor R A Phelan P E Otanicar T P 2011Nanoseale Research Letters2011,6,1:1
20Optical properties of liquids for direct absorption solar thermal energy systems显示文摘OTANICAR T P PHELAN P E GOLDEN J S 2009Solar Energy2009,83,7:1
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