- 清潔與可再生能源研究:太陽能熱利用
- 黃樹紅 張燕平 劉洋
- 1737字
- 2021-04-09 17:37:47
參考文獻
[1] China analysis brief,2011,http://www.eia.gov/.
[2] BP,Statistical review of world energy full report 2011.2011:38,http://www.bp.com/.
[3] Zedtwitz P.V.,Steinfeld A..The solar thermal gasification of coal-energy conversion efficiency and CO2 mitigation potential.Energy,2003(28):441-456.
[4] Wu D W,Wang R Z..Combined cooling,heating and power:A review.Progress in Energy and Combustion Science,2006,32:459-495
[5]朱成章.美國冷熱電聯產綱領及啟示.中國電力,2000,33(9):91-94.
[6]忻奇峰.冷熱電三聯供系統在浦東國際機場的應用.電力需求側管理,2004(5):40-42.
[7]李勝,吳靜怡,王如竹.冷熱電聯供系統的研究熱點概述.制冷與空調,2008,8(6):1-9.
[8] Wang J,Dai Y,Gao L,et al.A new combined cooling,heating and power system driven by solar energy[J].Renewable Energy,2009,34(12):2780-2788.
[9]郭棟.中低溫太陽能與甲醇熱化學互補的冷熱電聯產系統.北京:中國科學院研究生院,2009.
[10] 郭平生,唐賢健,李天華.利用太陽能沼氣的分布式冷熱電供能系統研究.魯東大學學報(自然科學版),2010,26(1):75-78.
[11]Dudley,V.G.Kolb,A.R.Mahoney,et al.Test Results SEGS LS-2 Solar Collector,1994,SAND 94-1884.
[12] Lippke Frank.Simulation of the Part-Load Behavior of a 30 MWe SEGS Plant.SAND 95-1293,Sandia National Laboratories,Albuquerque,1995.
[13] P.Schwarzboezl,U.Eiden,R.Pitz-Paal,et al.A TRNSYS Model Library for Solar Thermal Electric Components(STEC),A Reference Manual.http: //sel.me.wisc.edu/TRNSYS/Trnlib/STEC/,2002.
[14] R.Forristall.Heat transfer analysis and modeling of a parabolic trough solar receiver implemented in engineering equation solver.Technical Report NREL/TP-550-34169,National Renewable Energy Laboratory,1617 Cole Boulevard,Golden,Colorado 80401-3393,2003.
[15] Stoddard,M.C.,Faas,S.E.,Chiang,C.J.,et al.SOLERGY-A Computer Code for Calculating the Annual Energy from Central Receiver Power Plants.SANDIA Report SAND86-8060.1987.
[16] Price,H.W.,Svoboda,P., Kearney, D., Validation of the FLAGSOL Parabolic Trough Solar Power Plant Performance Model, Solar Engineering 1995, American Society of Mechanical, Maui,Hawaii,1995.
[17] Jones,S.A.,Pitz-Paal R.,Schwarzboezl P.,et al.TRNSYS MODELING OF THE SEGS Ⅵ PARABOLIC TROUGH,in Proceedings of Solar Forum 2001:Solar Energy:The Power to Choose,Washington,DC,2001.
[18] ABSIM.Modular simulation of absorption systems-user's guide and reference.Oak Ridge National Laboratory,P.0.Box 2008,Oak Ridge,2000.
[19] Grossman G,Zaltash A.ABSIM-modular simulation of absorption systems.Int J Refrig,2001,24:531-43.
[20] Engineering equation solver,version 8.176.F-Chart Software,Box 44042,Madison,WI,USA;2009.
[21] Beitelmal M,Chandrakant P.Model-based approach for optimizing a datacenter centralized cooling system.Palo Alto(CA,USA):HP Laboratories,2006.
[22] Liao X.The integration of air-cooled absorption chiller in CHP systems.Ph.D.Thesis,University of Maryland,College Park,MD,USA;2004.
[23] Kim DS,Infante Ferreira CA.Analytic modeling of steady state single-effect absorption cycles.Int J Refrig,2008,31:1012-20.
[24] Kohlenbach P,Ziegler F.A dynamic simulation model for transient absorption chiller performance.Part I:The model.Int J Refrig,2008,31:217-25.
[25] Matsushima H,Fujii T,Komatsu T,et al.A dynamic simulation program with object-oriented formulation for absorption chillers(simulation method and modeling) .Int J Refrig,2009,33:259-68.
[26] C.Somers et.al,Modeling water/lithium bromide absorption chillers in ASPEN Plus,Applied Energy 2011,88(11):4197-4205.
[27] Aspentech.Aspen Plus.2004,www.aspentech.com.
[28]太陽能資源分布.中國數字科技館地球資源博覽館2010,http://amuseum.cdstm.en/.
[29] 中國能源網.分布式能源國內發展狀況.2010. http://www.china5e.com/.
[30]姚冬琴.中國光熱發電蹣跚起步.2011.http://www.china5e.com/.
[31]深圳市氣象局(臺),深圳氣候特點.2009.http://www.szmb.gov.cn/.
[32] NREL,China Global Horizontal Solar Radiation.2005.http://www.nrel.gov/gis/.
[33] Fernández-García, F.Zarza,L.Valenzuela,et al.Parabolic-trough solar collectors and their applications.Renewable and Sustainable Energy Reviews,2010, 14(7):1695-1721.
[34] Abdelkader Zaaraoui,Mohamed Lamine Yousfi,Noureddine Said.Technical and Economic Performance of Parabolic Trough Collector Power Plant under Algerian Climate.Procedia Engineering,2012,33:78-91.
[35] Guillermo Ordorica-Garcia, Alfonso Vidal Delgado,Aranzazu Fernandez Garcia,2011,Novel integration options of concentrating solar thermal technology with fossil-fuelled and CO2 capture processes Energy Procedia 4,809-816.
[36] J.A.Duffie,W.A.Beckman.Solar Engineering of Thermal Processes(2nd ed.) .Wiley-Interscience,New York,1991:657-664.
[37] Meier A.,Sattler C.Solar fuel from concentrated sunlight.2009.http: //www.solarpaces.org.
[38] Barlev D.,Vidu R.,Stroeve P.Innovation in concentrated solar power.Solar Energy Materials And Solar Cells,2011,95(10):2703-2725.
[39] THORSTEN A.STUETZLE.Automatic Control of the 30 MWe SEGS Ⅵ Parabolic Trough Plant: [Master Thesis],University of wisconsin-madison,2002.
[40] Angela M.Patnode.Simulation and Performance Evaluation of Parabolic Trough Solar Power Plants:[Master Thesis].University of wisconsin-madison,2006.
[41] Robert W.Rialobrzeski,Optimization of a segs solar field for cost effective power output:[Master Thesis].Georgia Institute of Technology,2007.
[42] Fernández-García,E.Zarza,L.Valenzuela,M.Pérez.Parabolic-trough solar collectors and their applications.Renewable and Sustainable Energy Reviews,2010,14(7):1695-1721.
[43] Solutia.Therminol VP-1.1998,http: //twt.mpei.ac.ru/.
[44]古雯雯.基于Aspen Plus的太陽能與火電機組集成與性能研究.華北電力大學,2009.
[45]閻秦.太陽能輔助燃煤發電系統熱力特性研究.華北電力大學,2011.
[46]鄭體寬.熱力發電廠.2版.北京:中國電力出版社,2008:17-19.
[47]樊泉桂.鍋爐原理.北京:機械工業出版社,2008:23-28.
[48] Aspen Plus.Getting Started Modeling Processes with Solids.2010,http: //www.aspentech.com/.
[49]黃樹紅.汽輪機原理.北京:中國電力出版社,2007:20-23.
[50] Ali Chaibakhsh,Ali Ghaffari.Steam turbine model.Simulation Modelling Practice and Theory,2008, 16: 1145-1162.
[51] YING You,Eric J.Hu.A medium-temperature solar thermal power system and its efficiency optimization.Applied Thermal Engineering,2002,22(4):357-364.
[52] Hassan H Z, Mohamad A A.A review on solar cold production through absorption technology.Renewable and Sustainable Energy Reviews,2012,16(7):5331-5348.
[53] Zhai X Q,Qu M,Li Y,et al.A review for research and new design options of solar absorption cooling systems.Renewable and Sustainable Energy Reviews,201 1,15(9):4416-4423.
[54]黃超.小型太陽能吸收式空調系統及其吸收器的研究與模擬.武漢:華中科技大學,2009.
[55]張震.基于可再生能源的冷熱電三聯供熱力循環特性研究.武漢:華中科技大學,2009.
[56]韓崇巍.太陽能雙效溴化鋰吸收式制冷系統的性能研究.合肥:中國科學技術大學,2009.
[57]遠大空調有限公司.遠大X型非電空調選型設計手冊.2011,http: //bac.broad.com/.
[58] Christopher Michael Somers.SIMULATION OF ABSORPTION CYCLES FOR INTEGRATION INTO REFINING PROCESSES:[Master Thesis].University of Maryland,2009.
[59] Kim DS,Infante Ferreira CA.Analytic modeling of steady state single-effect absorption cycles.Int J Refrig,2008,31:1012-20.
[60] Hou W,Su H,Hu Y,Chu J.Modeling simulation and optimization of a whole industrial catalytic naphtha reforming process on ASPEN Plus platform.Chin J Chem Eng,2006,14(5):584-591.
[61] Nikoo MB,Mahinpey N.Simulation of biomass gasification in fluidized bed reactor using ASPEN Plus.Biomass Bioenergy,2008,32:1245-1254.