Power Generation Technology ›› 2024, Vol. 45 ›› Issue (2): 291-298.DOI: 10.12096/j.2096-4528.pgt.23071
• New Energy • Previous Articles Next Articles
Jun DONG1, Jianfang TANG1, Chuncheng ZANG2,3,4, Li XU2,3,4, Zhifeng WANG2,3,4
Received:
2023-06-30
Published:
2024-04-30
Online:
2024-04-29
Contact:
Chuncheng ZANG
Supported by:
CLC Number:
Jun DONG, Jianfang TANG, Chuncheng ZANG, Li XU, Zhifeng WANG. Development and Application of Test System for Ball Joints of Parabolic Trough Solar Collector[J]. Power Generation Technology, 2024, 45(2): 291-298.
类别 | 温度/压力 | |||||
---|---|---|---|---|---|---|
200 ℃/ 1.0 MPa | 250 ℃/ 1.0 MPa | 293 ℃/ 1.0 MPa | 293 ℃/ 1.7 MPa | 350 ℃/ 2.1 MPa | 393 ℃/ 2.6 MPa | |
最大旋转扭矩/(N∙m) | 312.25 | 248.91 | 256.69 | 405.49 | 450.95 | 505.32 |
平均旋转扭矩/(N∙m) | 261.37 | 209.46 | 224.16 | 351.53 | 392.20 | 455.60 |
Tab. 1 Torque test results of the ball joint under variable working conditions
类别 | 温度/压力 | |||||
---|---|---|---|---|---|---|
200 ℃/ 1.0 MPa | 250 ℃/ 1.0 MPa | 293 ℃/ 1.0 MPa | 293 ℃/ 1.7 MPa | 350 ℃/ 2.1 MPa | 393 ℃/ 2.6 MPa | |
最大旋转扭矩/(N∙m) | 312.25 | 248.91 | 256.69 | 405.49 | 450.95 | 505.32 |
平均旋转扭矩/(N∙m) | 261.37 | 209.46 | 224.16 | 351.53 | 392.20 | 455.60 |
1 | 王志峰,何雅玲,康重庆,等 .明确太阳能热发电战略定位促进技术发展[J].华电技术,2021,43(11):1-4. |
WANG Z F, HE Y L, KANG C Q,et al .Strategic positioning of solar thermal power generation to promote technological progress[J].Huadian Technology,2021,43(11):1-4. | |
2 | 黄畅,颜逸贤,白尧,等 .促进风电消纳的太阳能-燃煤热电联产系统性能研究[J].中国电力,2022,55(5):182-188. |
HUANG C, YAN Y X, BAI Y,et al .Performance analysis of solar-coal cogeneration system for wind power consumption[J].Electric Power,2022,55(5):182-188. | |
3 | 吴昊文,张乐平,张维,等 .高比例太阳能接入配电终端微电网调峰方法研究[J].电网与清洁能源,2023,39(2):122-127. doi:10.3969/j.issn.1674-3814.2023.02.016 |
WU H W, ZHANG L P, ZHANG W,et al .A study on peak load regulating methods of high proportion solar energy connected to distribution terminal microgrid[J].Power System and Clean Energy,2023,39(2):122-127. doi:10.3969/j.issn.1674-3814.2023.02.016 | |
4 | 梁政,魏震波,孙舟倍,等 .光热发电商参与下的电力现货市场均衡分析[J].电力建设,2022,43(1):122-131. doi:10.12204/j.issn.1000-7229.2022.01.014 |
LIANG Z, WEI Z B, SUN Z B,et al .Analysis of the equilibrium of electricity spot market with the participation of CSP[J].Electric Power Construction,2022,43(1):122-131. doi:10.12204/j.issn.1000-7229.2022.01.014 | |
5 | 王湘艳,陈宁,王维洲,等 .计及置信容量的光热电站储热容量优化配置[J].电力工程技术,2022,41(5):103-109. doi:10.12158/j.2096-3203.2022.05.012 |
WANG X Y, CHEN N, WANG W Z,et al .Optimal design for thermal energy storage capacity of CSP considering credible capacity[J].Electric Power Engineering Technology,2022,41(5):103-109. doi:10.12158/j.2096-3203.2022.05.012 | |
6 | 徐立,孙飞虎,李钧,等 .抛物面槽式太阳能集热器热损失因素研究[J].发电技术,2023,44(2):229-234. doi:10.12096/j.2096-4528.pgt.21070 |
XU L, SUN F H, LI J,et al .Study on heat loss factors of parabolic trough solar collectors[J].Power Generation Technology,2023,44(2):229-234. doi:10.12096/j.2096-4528.pgt.21070 | |
7 | 林达,顾丹青,周宇昊,等 .太阳能有机朗肯循环系统技术经济性分析[J].浙江电力,2022,41(4):14-19. |
LIN D, GU D Q, ZHOU Y H,et al .Thermo-economic analysis of solar organic Rankine cycle system[J].Zhejiang Electric Power,2022,41(4):14-19. | |
8 | 卢乃兵,刘万军,尹航 .高原地区槽式光热电站导热油泄漏监测装置应用研究[J].内蒙古电力技术,2022,40(6):13-16. |
LU N B, LIU W J, YIN H .Research on application of thermal conductive oil leakage monitoring device in trough photothermal power station in plateau area[J].Inner Mongolia Electric Power,2022,40(6):13-16. | |
9 | 丁路,肖欣悦,奚正稳,等 .塔式太阳能吸热器不同方位高空风速模拟计算及影响分析[J].发电技术,2021,42(6):707-714. doi:10.12096/j.2096-4528.pgt.21026 |
DING L, XIAO X Y, XI Z W,et al .Simulation calculation and influence analysis of high altitude wind speed in different directions of tower solar energy receiver[J].Power Generation Technology,2021,42(6):707-714. doi:10.12096/j.2096-4528.pgt.21026 | |
10 | 王志峰 .太阳能热发电站设计[M].2版.北京:化学工业出版社,2019:10-16. doi:10.1016/b978-0-12-815613-1.00003-1 |
WANG Z F .Design of solar thermal power plants[M].2nd ed.Beijing:Chemical Industry Press,2019:10-16. doi:10.1016/b978-0-12-815613-1.00003-1 | |
11 | KRISHNA Y, FAIZAL M, SAIDUR R,et al .State-of-the-art heat transfer fluids for parabolic trough collector[J].International Journal of Heat and Mass Transfer,2020,152:119541. doi:10.1016/j.ijheatmasstransfer.2020.119541 |
12 | PAL R K, KUMAR K R .Investigations of thermo-hydrodynamics,structural stability,and thermal energy storage for direct steam generation in parabolic trough solar collector:a comprehensive review[J].Journal of Cleaner Production,2021,311:1-30. doi:10.1016/j.jclepro.2021.127550 |
13 | 徐立,孙飞虎,李钧,等 .流量对抛物面槽式太阳能集热器传热特性影响的实验分析[J].发电技术,2021,42(6):665-672. doi:10.12096/j.2096-4528.pgt.21072 |
XU L, SUN F H, LI J,et al .Experimental analysis of the influence of flow rate on heat transfer characteristics of parabolic trough solar collector[J].Power Generation Technology,2021,42(6):665-672. doi:10.12096/j.2096-4528.pgt.21072 | |
14 | 程兴利 .槽式太阳能热发电站中太阳岛的集热器回路的压力试验分析[J].太阳能,2022(1):72-76. |
CHENG X L .Pressure test analysis of collector loops of solar island in trough solar thermal power station[J].Solar Energy,2022(1):72-76. | |
15 | 陈晨,赵雄,于延兴,等 .槽式太阳能集热器跟踪系统故障分析[J].电力安全技术,2022,24(1):18-19. doi:10.3969/j.issn.1008-6226.2022.01.007 |
CHEN C, ZHAO X, YU Y X,et al .Analysis on a fault of trough solar collector tracking system[J].Electric Safety Technology,2022,24(1):18-19. doi:10.3969/j.issn.1008-6226.2022.01.007 | |
16 | 张磊,刘雪莲,王静,等 .槽式太阳能集热管寿命评价分析[J].太阳能,2018(10):52-54. doi:10.3969/j.issn.1003-0417.2018.10.013 |
ZHANG L, LIU X L, WANG J,et al .Analysis on trough type solar collector tube life assessment[J].Solar Energy,2018(10):52-54. doi:10.3969/j.issn.1003-0417.2018.10.013 | |
17 | 皮骏,蒲芋树,刘光才,等 .内置扰流柱列太阳能集热管的换热分析[J].太阳能学报,2020,41(9):227-232. |
PI J, PU Y S, LIU G C,et al .Heat transfer analysis of internally pin-finned solar parabolic trough collector[J].Acta Energiae Solaris Sinica,2020,41(9):227-232. | |
18 | KHANNA S, NEWAR S, SHARMA V,et al .Deformation of receiver in solar parabolic trough collector due to non uniform temperature and solar flux distribution and use of bimetallic absorber tube with multiple supports[J].Energy,2018,165:1078-1088. doi:10.1016/j.energy.2018.09.145 |
19 | 王立,张智,施瑶璐,等 .基于数值仿真的抛物槽式太阳能集热器研究进展[J].发电技术,2021,42(6):643-652. doi:10.12096/j.2096-4528.pgt.21061 |
WANG L, ZHANG Z, SHI Y L,et al .Research progress of parabolic trough solar collector based on numerical simulation[J].Power Generation Technology,2021,42(6):643-652. doi:10.12096/j.2096-4528.pgt.21061 | |
20 | HYSPAN C .Summary test report ball joint life cycle test solar plant installations[EB/OL].. |
21 | LEON J, CLAVERO J, VALENZUELA L,et al .Test loop for inter-connections of parabolic trough collectors[J].AIP Conference Proceedings,2018,2033(1):030008. doi:10.1063/1.5067024 |
22 | MUÑOZ-ANTON J, BIENCINTO M, ZARZA E,et al .Theoretical basis and experimental facility for parabolic trough collectors at high temperature using gas as heat transfer fluid[J].Applied Energy,2014,135:373-381. doi:10.1016/j.apenergy.2014.08.099 |
23 | 高启宽,王自发,高勇,等 .槽式太阳能光热发电热工自动装置PID参数整定分析及对策[J].中文科技期刊数据库(文摘版)工程技术,2021(12):307-308. |
GAO Q K, WANG Z F, GAO Y,et al .PID parameter setting analysis and countermeasure of automatic thermal equipment for parabolic trough solar thermal power[J].Chinese Science and Technology Periodical Database (Abstract Version) Engineering Technology,2021(12):307-308. | |
24 | 生态环境部,国家市场监督管理总局 . 挥发性有机物无组织排放控制标准: [S].北京:中国环境出版集团,2019. |
Ministry of Ecology and Environment of the People’s Republic of China,State Administration for Market Regulation . Standard for fugitive emission of volatile organic compounds: [S].Beijing:China Environmental Science Press,2019. |
[1] | Yunfei XU, Shuimu WU, Yingjie LI. Research Progress of CaO-CO2 Thermochemical Heat Storage Technology for Concentrated Solar Power Plant [J]. Power Generation Technology, 2022, 43(5): 740-747. |
[2] | Li XU, Feihu SUN, Zhi LI, Qiangqiang ZHANG. A Calculation Method of Average Fluid Temperature in Solar Collector [J]. Power Generation Technology, 2022, 43(3): 405-412. |
[3] | Zhirong LIAO, Pengda LI, Ziqian TIAN, Chao XU, Gaosheng WEI. Heat Transfer Enhancement of a Cascaded Latent Heat Thermal Energy Storage System by Fins With Different Uneven Layouts [J]. Power Generation Technology, 2022, 43(1): 83-91. |
[4] | Lu DING, Xinyue XIAO, Zhengwen XI, Wenhan HUA. Simulation Calculation and Influence Analysis of High Altitude Wind Speed in Different Directions of Tower Solar Energy Receiver [J]. Power Generation Technology, 2021, 42(6): 707-714. |
[5] | Hao SUN, Bo GAO, Jianxing LIU. Study on Heliostat Field Layout of Solar Power Tower Plant [J]. Power Generation Technology, 2021, 42(6): 690-698. |
[6] | Lanhua LIU, Linwen DI, Xingwan DONG, Ruilin WANG. Study on Dynamic Characteristics of Parabolic Trough Solar Collector Circuit [J]. Power Generation Technology, 2021, 42(6): 673-681. |
[7] | Li XU, Feihu SUN, Jun LI, Qiangqiang ZHANG. Experimental Analysis of the Influence of Flow Rate on Heat Transfer Characteristics of Parabolic Trough Solar Collector [J]. Power Generation Technology, 2021, 42(6): 665-672. |
[8] | Lanhua LIU, Ruilin WANG, Hui HONG. Design of Calcium-based Carbon Capture System for Gas-Steam Combined Cycle Assisted by Solar Thermal Tower [J]. Power Generation Technology, 2021, 42(4): 517-524. |
[9] | Zezhong WANG, Pingrui HUANG, Gaosheng WEI, Liu CUI, Chao XU, Xiaoze DU. Research Progress of Solid-Gas Two-Phase Chemical Heat Storage Technology for Solar Thermal Power Generation [J]. Power Generation Technology, 2021, 42(2): 238-246. |
[10] | Yaodong LIU, Yanping ZHANG, Liang WAN, Wei GAO. Heat Transfer Modelling and Performance Analysis of Trough Solar Thermal Power Collector Based on Al2O3 Nanofluid [J]. Power Generation Technology, 2021, 42(2): 230-237. |
[11] | Kaiyun ZHENG. Application of Supercritical Carbon Dioxide Cycle Power Generation Technology [J]. Power Generation Technology, 2020, 41(4): 399-406. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||