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DSG槽式太阳能集热器非线性分布参数模型及动态特性 被引量:6

Nonlinear Distributed Parameter Model and Dynamic Characteristics of Parabolic Trough Direct Steam Generation Solar Collectors
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摘要 直接蒸汽发电(direct steam generation,DSG)槽式太阳能热发电系统的集热器长度一般很长,且具有明显的分布参数特征。因此,建立DSG槽式太阳能集热器的非线性分布参数模型,以DSG集热器入口工质温度、质量流量和出口压力为边界条件,采用迎风格式的有限差分法对模型进行离散求解。仿真研究了DSG集热器主要参数在太阳辐射强度、给水温度和给水流量变化等扰动工况下的响应特性,结果与文献实验结果基本一致,验证了模型的正确性。结果表明:太阳辐射强度降低时,出口工质温度下降得很快;给水流量或给水温度小幅下降时,出口工质温度和流量都会滞后响应且变化显著;DSG集热器出口工质流量在某些情况下会发生脉动,实际应用中应避免脉动状态的发生或降低其影响。 Direct steam generation (DSG) in parabolic trough solar power system has long solar collector and obvious distributed parameter characteristics. Therefore, a nonlinear distributed parameter model for parabolic trough DSG solar collectors was built in this paper. As a boundary condition, fluid temperature and mass flow had to be provided at the inlet as well as the pressure at the outlet, and the finite differential approach with an upwind scheme was adopted to discrete and solve the model. Compared with experimental results from the literature, the correctness of the model was validated by simulation results during the main conditions such as solar radiation intensity, inlet fluid temperature and inlet mass flow change. Simulation results show that fluid temperature at the outlet decreases quickly when solar radiation intensity is declined; Furthermore, the responses of fluid temperature and mass flow at the outlet delay largely and stabilize slowly when mass flow or temperature at the inlet declined slightly; Most significantly, a pulsation phenomenon of outlet mass flow may happen in some conditions, which should be avoided or declined in practical application.
出处 《中国电机工程学报》 EI CSCD 北大核心 2014年第11期1779-1786,共8页 Proceedings of the CSEE
基金 国家重点基础研究发展计划项目(973计划)(2010CB227102) 江苏省自然科学基金项目(BK20131369)~~
关键词 抛物线槽式 直接蒸汽发电 太阳能集热器 非线性分布参数模型 动态特性 parabolic trough direct steam generation (DSG) solar collector non-linear distribution parameter model dynamic characters
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参考文献23

  • 1郭苏,刘德有,张耀明,许昌,王沛.循环模式DSG槽式太阳能集热器出口蒸汽温度控制策略研究[J].中国电机工程学报,2012,32(20):62-68. 被引量:18
  • 2Zarza E. Overview on direct steam generation (DSG) and experience at the plataforma solar de Almeria (PSA) [R]. Spain: CIEMAT-Plataforma Solar de Almeria, 2007.
  • 3Price H, Lupfert E, Keamey D, et al. Advances in parabolic trough solar power technology[J]. Journal of Solar Energy Engineering. 2002, 124(2): 109-125.
  • 4曲航,赵军,于晓.抛物槽式太阳能热发电系统的模拟分析(英文)[J].中国电机工程学报,2008,28(11):87-93. 被引量:16
  • 5王沛,刘德有,许昌,郭苏,唐若晗.DSG槽式真空集热管内金属泡沫强化传热的数值研究[J].中国电机工程学报,2012,32(23):83-89. 被引量:6
  • 6Valenzuela L, Zarza E, Berenguel M, et al. Direct steam generation in solar boilers[J]. IEEE Control Systems Magazine, 2004, 24(2): 15-29.
  • 7Odeh S D, Morrison G L, Behnia M. Modelling of parabolic trough direct steam generation solar collectors [J]. Solar Energy, 1998, 62(6): 395-406.
  • 8Almanza R, Lentz A, Jimonez G. Receiver behavior in direct steam generation with parabolic troughs[J]. Solar Energy, 1997, 61(4): 275-278.
  • 9Almanza R, Jimonez G, Lentz A, et al. DSG under two-phase and stratified flow in a steel receiver of a parabolic trough collector[J]. Journal of Solar Energy Engineering-transactions of the Asme, 2002, 124(2): 140-144.
  • 10韦彪,朱天宇,刘德有.槽式DSG太阳能集热系统模拟分析[J].工程热物理学报,2012,33(3):473-476. 被引量:10

二级参考文献81

  • 1潘天红,乐艳,李少远.大范围工况热工过程的多模型预测控制[J].系统工程与电子技术,2004,26(10):1439-1443. 被引量:12
  • 2张绍强,张运章.我国煤炭资源、生产与环境概况[J].环境保护,2006,34(07A):53-57. 被引量:32
  • 3李明,夏朝凤.槽式聚光集热系统加热真空管的特性及应用研究[J].太阳能学报,2006,27(1):90-95. 被引量:22
  • 4刘向杰,殷冲,侯国莲,张建华.联合循环电厂余热锅炉的监督预测控制策略[J].中国电机工程学报,2007,27(20):52-58. 被引量:9
  • 5Price H, Lupfert E, et al. Advances in parabolic trough solar power technology [ J ]. Journal of Solar Energy Engineering, 2(D2, 124(5) : 109-125.
  • 6Eck M, Steinmann W D. Direct steam generation in parabohc troughs: first results of the DISS project[J]. Journal of Solar Energy Engineering, 2002, 124(5) : 134-139.
  • 7ODeh S D, Morrison G L, Behinia M. Modeling of parabolic trough direct steam generation solar collectors[ J]. Solar Energy, 1998, 62(6): 395-406.
  • 8Odeh S D, Behnia M, Morrison G L. Hydrodynamic analysis of direct steam generation solar collectors[ J ]. Journal of Solar Energy Engineering, 2000,122(2) : 14-22.
  • 9Eck M, Steinmann W D. Modelling and design of direct solar steam generating collector fields [ J ]. Journal of Solar Energy Engineering, 2005,127(8) :371-380.
  • 10Goebel O. Modelling of two-phase stratified an annular flow in heated horizontal tubes[A]. Proc of Int Engineering Foundation 3^rd Conf [C], Irsee, Germany, 1997.

共引文献50

同被引文献69

  • 1吴理博,赵争鸣,刘建政,王健,钟志刚.独立光伏照明系统中的能量管理控制[J].中国电机工程学报,2005,25(22):68-72. 被引量:75
  • 2李明,夏朝凤.槽式聚光集热系统加热真空管的特性及应用研究[J].太阳能学报,2006,27(1):90-95. 被引量:22
  • 3董旭柱,雷金勇,饶宏,等.含蓄电池储能的光伏并网发电系统的建模与仿真[A].第十三届中国科协年会第15分会场一大规模储能技术的发展与应用研讨会论文集[C].天津:2011.
  • 4Cohen G, Kearney D. Improved parabolic trough solar electric system based on the SEGS experience[A]. Proceeding of ASES Annual Conference[C], San Jose, CA, 1994.
  • 5Price H, Lupfert E, Kearney D, et al. Advances in parabolic trough solar power technology[J]. Journal of Solar Energy Engineering, 2002, 124(2): 109 - 125.
  • 6Zarza E. Overview on direct steam generation(DSG)and experience at the plataforma solar de almeria(PSA)[R]. Spain: CIEMAT-Plataforma Solar de Almeria, 2007.
  • 7Dudley V, Kolb G, Sloan M, et al. SEGS LS2 solar collector - test results[R]. Albuquerque: Sandia National Laboratories, 1994.
  • 8Giostri A, Binotti M, Silva P, et al. Comparison of Two Linear Collectors in Solar Thermal Plants: Parabolic Trough vs. Fresnel[A]. Proceedings of the ASME 2011 5th International Conference on Energy Sustainability[C]. Washington D.C., 2011.
  • 9Dagan E, Muller M, Lippke F. Direct steam generation in the parabolic trough collector[R]. Report of Plataform Solar de Almeria-Madrid, 1992.
  • 10Lippke E Direct steam generation in parabolic trough solar power plants: Numerical investigation of the transients and the control of a once-through system[J]. Journal of Solar Energy Engineering, 1996, 118(1):9 - 14.

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