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Guangdong Zhu
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Cited by
Year
History, current state, and future of linear Fresnel concentrating solar collectors
G Zhu, T Wendelin, MJ Wagner, C Kutscher
Solar Energy 103, 639-652, 2014
3422014
Commercial lunar propellant architecture: A collaborative study of lunar propellant production
D Kornuta, A Abbud-Madrid, J Atkinson, J Barr, G Barnhard, D Bienhoff, ...
Reach 13, 100026, 2019
1652019
Development of an analytical optical method for linear Fresnel collectors
G Zhu
Solar Energy 94, 240-252, 2013
1112013
An optical performance comparison of three concentrating solar power collector designs in linear Fresnel, parabolic trough, and central receiver
N Kincaid, G Mungas, N Kramer, M Wagner, G Zhu
Applied energy 231, 1109-1121, 2018
1092018
Thermodynamic evaluation of solar integration into a natural gas combined cycle power plant
G Zhu, T Neises, C Turchi, R Bedilion
Renewable Energy 74, 815-824, 2015
982015
Hybridizing a geothermal power plant with concentrating solar power and thermal storage to increase power generation and dispatchability
JD McTigue, J Castro, G Mungas, N Kramer, J King, C Turchi, G Zhu
Applied energy 228, 1837-1852, 2018
872018
New adaptive method to optimize the secondary reflector of linear Fresnel collectors
G Zhu
Solar energy 144, 117-126, 2017
752017
Geometric analysis of three-dimensional effects of parabolic trough collectors
M Binotti, G Zhu, A Gray, G Manzolini, P Silva
Solar Energy 88, 88-96, 2013
592013
An improved method for characterizing reflector specularity for parabolic trough concentrators
R Gee, R Brost, G Zhu, G Jorgensen
Proceedings of Solar PACES Conference Perpignan (France) 2124, 2010
552010
A direct-steam linear Fresnel performance model for NREL’s system advisor model
MJ Wagner, G Zhu
Energy Sustainability 44816, 459-468, 2012
512012
A new optical evaluation approach for parabolic trough collectors: first-principle optical intercept calculation
G Zhu, A Lewandowski
Journal of solar energy engineering 134 (4), 041005, 2012
482012
Evaluation and comparison of an adaptive method technique for improved performance of linear Fresnel secondary designs
M Hack, G Zhu, T Wendelin
Applied Energy 208, 1441-1451, 2017
452017
PARAMETERS AND METHOD TO EVALUATE THE SOLAR REFLECTANCE PROPERTIES OF REFLECTOR MATERIALS FOR CONCENTRATING SOLAR POWER TECHNOLOGY
SM DLR, M Montecchi, C Kennedy, G Zhu, A Heimsath
412013
Modeling microcapsules that communicate through nanoparticles to undergo self-propelled motion
OB Usta, A Alexeev, G Zhu, AC Balazs
ACS nano 2 (3), 471-476, 2008
412008
Assessing geothermal/solar hybridization–Integrating a solar thermal topping cycle into a geothermal bottoming cycle with energy storage
JD McTigue, D Wendt, K Kitz, J Gunderson, N Kincaid, G Zhu
Applied Thermal Engineering 171, 115121, 2020
372020
Geothermal/Solar Hybrid Designs: Use of Geothermal Energy for CSP Feedwater Heating
C Turchi, G Zhu, M Wagner, T Williams, D Wendt
Geothermal Resources Council Transactions 38 (NREL/CP-5G00-61994), 2014
332014
On characterization and measurement of average solar field mirror reflectance in utility-scale concentrating solar power plants
G Zhu, D Kearney, M Mehos
Solar Energy 99, 185-202, 2014
312014
Sensitivity analysis on optical performance of a novel linear Fresnel concentrating solar power collector
N Kincaid, G Mungas, N Kramer, G Zhu
Solar Energy 180, 383-390, 2019
292019
Review and future perspective of central receiver design and performance
G Zhu, C Libby
AIP Conference Proceedings 1850 (1), 2017
272017
An alternative methodology to treat solar radiation data for the optical efficiency estimate of different types of collectors
M Binotti, G Manzolini, G Zhu
Solar energy 110, 807-817, 2014
272014
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