Conjugate radiation-convection-conduction simulation of volumetric solar receivers with cut-back inlets

被引:25
作者
Nakakura, Mitsuho [1 ,4 ]
Bellan, Selvan [2 ,3 ]
Matsubara, Koji [1 ,3 ]
Kodama, Tatsuya [1 ,3 ]
机构
[1] Niigata Univ, Fac Engn, Nishi Ku, Ikarashi 2 No Cho 8050, Niigata 9502181, Japan
[2] Niigata Univ, Ctr Transdisciplinary Res, Nishi Ku, Ikarashi 2 Nocho 8050, Niigata 9502181, Japan
[3] Niigata Univ, Pacific Rim Solar Fuel Syst Res Ctr, 8050 Ikarashi 2 Nocho, Niigata 9502181, Japan
[4] Japan Soc Promot Sci, Res Fellowship Young Scientists, Chiyoda Ku, Kojimachi Business Ctr Bldg,5-3-1 Kojimachi, Tokyo 1020083, Japan
关键词
Conjugate heat transfer; Radiation; Conduction; Volumetric solar receiver; Cut-back inlet receiver; SCALE NUMERICAL-SIMULATION; HEAT-TRANSFER ANALYSIS; THERMAL PERFORMANCE; AIR RECEIVER; FLOW; COMBUSTION; ABSORBERS; MODEL;
D O I
10.1016/j.solener.2018.06.006
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This study analyzes the effect of cut-back inlets on the conjugate heat transfer of honeycomb-channel solar receivers. Two-way coupling simulations are reported for a plane-surface inlet, and five kinds of cut-back inlet receivers. The receivers are based on a 1.9-mm x 1.9-mm square cell with a 1.0-mm wall thickness. The cut-back inlet receivers have different amounts of material removed from the walls at the channel inlets. Numerical simulations demonstrate that receivers with a 2.4-mm cut from the channel inlet increased the exit temperature by 20.0 K or more, and decreased the pressure drop relative to the plane-surface receiver. Therefore, the results indicate that the cut-back inlet receiver's thermal, and hydrodynamic performance is better for industrial use than is the plane-surface receiver. This performance is then explained with detailed examinations of the individual heat-transfer processes in the model. These detailed comparisons indicate that the top cuts reduce shadow effects as light irradiates the channel walls, allowing more direct irradiation to reach the wall surface, thus improving the overall performance.
引用
收藏
页码:606 / 617
页数:12
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