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Dive into the research topics where Guangdong Zhu is active.

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Featured researches published by Guangdong Zhu.


Archive | 2015

Geothermal Risk Reduction via Geothermal/Solar Hybrid Power Plants. Final Report

Daniel S. Wendt; Greg Mines; Craig Turchi; Guangdong Zhu

The Stillwater Power Plant is the first hybrid plant in the world able to bring together a medium-enthalpy geothermal unit with solar thermal and solar photovoltaic systems. Solar field and power plant models have been developed to predict the performance of the Stillwater geothermal / solar-thermal hybrid power plant. The models have been validated using operational data from the Stillwater plant. A preliminary effort to optimize performance of the Stillwater hybrid plant using optical characterization of the solar field has been completed. The Stillwater solar field optical characterization involved measurement of mirror reflectance, mirror slope error, and receiver position error. The measurements indicate that the solar field may generate 9% less energy than the design value if an appropriate tracking offset is not employed. A perfect tracking offset algorithm may be able to boost the solar field performance by about 15%. The validated Stillwater hybrid plant models were used to evaluate hybrid plant operating strategies including turbine IGV position optimization, ACC fan speed and turbine IGV position optimization, turbine inlet entropy control using optimization of multiple process variables, and mixed working fluid substitution. The hybrid plant models predict that each of these operating strategies could increase net power generation relative to the baseline Stillwater hybrid plant operations.


Light, Energy and the Environment (2017), paper RM2C.3 | 2017

A simple planar focusing collector for concentrated solar power applications

Qing Ding; Kyle E. Jacobs; Aakash Choubal; Glennys Mensing; Zhong Zhang; Robert Tirawat; Guangdong Zhu; Tim Wendelin; L. Jay Guo; Placid M. Ferreira; Kimani C. Toussaint

We present a simple planar focusing collector, based on binary optics, for concentrated solar power. Fabrication is achieved using 3D two-photon lithography, and subsequent UV nanoimprinting tests for scalability. Optical characterization results are also reported.


Solar Energy | 2014

History, current state, and future of linear Fresnel concentrating solar collectors

Guangdong Zhu; Tim Wendelin; Michael J. Wagner; Chuck Kutscher


Solar Energy | 2013

Development of an analytical optical method for linear Fresnel collectors

Guangdong Zhu


Solar Energy | 2013

Geometric analysis of three-dimensional effects of parabolic trough collectors

Marco Binotti; Guangdong Zhu; Allison Gray; Giampaolo Manzolini; Paolo Silva


Solar Energy | 2014

An alternative methodology to treat solar radiation data for the optical efficiency estimate of different types of collectors

Marco Binotti; Giampaolo Manzolini; Guangdong Zhu


Solar Energy | 2017

New adaptive method to optimize the secondary reflector of linear Fresnel collectors

Guangdong Zhu


Solar Energy | 2014

On Characterization and Measurement of Average Solar Field Mirror Reflectance in Utility-Scale Concentrating Solar Power Plants

Guangdong Zhu; David W. Kearney; Mark Mehos


Archive | 2011

A Generic CSP Performance Model for NREL's System Advisor Model

Michael J. Wagner; Guangdong Zhu


Applied Energy | 2017

Evaluation and comparison of an adaptive method technique for improved performance of linear Fresnel secondary designs

Madeline Hack; Guangdong Zhu; Timothy J. Wendelin

Collaboration


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Craig Turchi

National Renewable Energy Laboratory

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Michael J. Wagner

National Renewable Energy Laboratory

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Tim Wendelin

National Renewable Energy Laboratory

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Allison Gray

National Renewable Energy Laboratory

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Daniel S. Wendt

Idaho National Laboratory

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L. Jay Guo

University of Michigan

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Robert Tirawat

National Renewable Energy Laboratory

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Zhong Zhang

University of Michigan

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Chuck Kutscher

National Renewable Energy Laboratory

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David W. Kearney

National Renewable Energy Laboratory

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