Feihu Sun
Chinese Academy of Sciences
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Featured researches published by Feihu Sun.
SOLARPACES 2015: International Conference on Concentrating Solar Power and Chemical Energy Systems | 2016
Minghuan Guo; Zhifeng Wang; Feihu Sun
The optical efficiencies of a solar trough concentrator are important to the whole thermal performance of the solar collector, and the outer surface of the tube absorber is a key interface of energy flux. So it is necessary to simulate and analyze the concentrated solar flux density distributions on the tube absorber of a parabolic trough solar collector for various sun beam incident angles, with main optical errors considered. Since the solar trough concentrators are linear focusing, it is much of interest to investigate the solar flux density distribution on the cross-section profile of the tube absorber, rather than the flux density distribution along the focal line direction. Although a few integral approaches based on the “solar cone” concept were developed to compute the concentrated flux density for some simple trough concentrator geometries, all those integral approaches needed special integration routines, meanwhile, the optical parameters and geometrical properties of collectors also couldn’t be...
SOLARPACES 2016: International Conference on Concentrating Solar Power and Chemical Energy Systems | 2017
Minghuan Guo; Feihu Sun; Zhifeng Wang
The solar tower concentrator is mainly composed of the central receiver on the tower top and the heliostat field around the tower. The optical efficiencies of a solar tower concentrator are important to the whole thermal performance of the solar tower collector, and the aperture plane of a cavity receiver or the (inner or external) absorbing surface of any central receiver is a key interface of energy flux. So it is necessary to simulate and analyze the concentrated time-changing solar flux density distributions on the flat or curved receiving surface of the collector, with main optical errors considered. The transient concentrated solar flux on the receiving surface is the superimposition of the flux density distributions of all the normal working heliostats in the field. In this paper, we will mainly introduce a new backward ray tracing (BRT) method combined with the lumped effective solar cone, to simulate the flux density map on the receiving-surface. For BRT, bundles of rays are launched at the recei...
Applied Thermal Engineering | 2011
Chao Xu; Zhifeng Wang; Xin Li; Feihu Sun
Solar Energy | 2013
Li Xu; Zhifeng Wang; Xin Li; Guofeng Yuan; Feihu Sun; Dongqiang Lei
Solar Energy | 2011
Minghuan Guo; Zhifeng Wang; Jianhan Zhang; Feihu Sun; Xiliang Zhang
Archive | 2010
Wenfeng Liang; Feihu Sun; Xiaoyu Wang; Zhifeng Wang; Zhong Yan
Solar Energy | 2014
Li Xu; Zhifeng Wang; Xin Li; Guofeng Yuan; Feihu Sun; Dongqiang Lei; Shidong Li
Solar Energy | 2012
Minghuan Guo; Zhifeng Wang; Jianhan Zhang; Feihu Sun; Xiliang Zhang
Energy Procedia | 2015
Li-Wen Xu; Z.F. Wang; Guofeng Yuan; Feihu Sun; Xinghua Zhang
Energy Procedia | 2014
Feihu Sun; Zhifeng Wang; Minghuan Guo; Qiang Yu; Fengwu Bai