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ghd stijltang USC boiler water wall temperature mo

 
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PostWysłany: Sob 8:04, 27 Lis 2010    Temat postu: ghd stijltang USC boiler water wall temperature mo

USC boiler water wall temperature monitoring of finite element analysis


Mode, the system is stable mutations, the frequency decreased, if necessary, the need for secondary frequency. (3) no difference between poor control and mixed control mode and network operation between the steady-state load distribution units are: Unit assumes no difference between the total load of the system changes, there is no commitment to change the basic difference between the load unit. (4) control mode in a poor, relatively flat unit load characteristics, small overshoot, the unit easy to stability, load distribution is reasonable, coupled with the daily load curve Tabei little change in power, hence the difference in the frequency control mode not much, from grid to maintain power system stability and reliability standpoint, the proposed round of the South Station 6 units are used with differential control mode. References: [1] Yang Shunhu. Gas-steam combined cycle power generation equipment and operation of [M]. Beijing: China Electric Power Press, 20O2. [2] Department of Electrical Engineering, Tsinghua University Gas Turbine Research Group. GT [M]. Beijing Water Conservancy and Electric Power Press, 1978. [3] Shen Shi a, Zhuanghe Qing,[link widoczny dla zalogowanych], Hong Chung, et al. Steam Turbine Principles [M]. Beijing: China Electric Power Press, 1998. (He Jingfang edit) (Continued from p. 306) References: [1] Li Zhihong. Membrane water wall temperature factors of the numerical analysis [J]. Thermal Power Engineering, 2003,18 (3) :173-176. [2] Guang-Jun Wang. General boiler heating surface thermodynamic process model [J], Proceedings of the CSEE, 1998,18 (4) :254-257. [3] ZHENG study, Chen Tingkuan. 6130MW Boiler Wall transformer running thread of the inner wall heat transfer [J], Proceedings of the CSEE, 1996,[link widoczny dla zalogowanych],16 (4) :271-275, [4] work on Monday. 600MW supercritical pressure boiler water wall temperature field outside the boundary conditions [J], Power Construction, 1974,5 (1) :23-43. [5] Pang Liping boiler heating surfaces of the numerical simulation of a high degree of fouling [J]. Proceedings of the CSEE, 2004,24 (10) :219-224. [6] Fan Quan linked. Subcritical and supercritical pressure boiler [M]. Beijing: China Electric Power Industry Press. 2OO0. [7] JESTINL, MEYERP. SCHMrlTG. a /. Heattransferina125MWCFBboiler [A]. ProeoftheSeveathFJIgI groan e soul FoundationCola-ferenceOilFluidizalionVI [C]. Briane: EngineeringFoundation. 1992.849-856. [8] Fan Jin, Jia Hongxiang, Chen Ting-Kuan. Analytical Membrane Water temperature [J]. POWER ,1996,3:10-17. [9] Zhang Na. Supercritical pressure boiler heating surface evaporation dynamic mathematical model of the class of analytic particular solution [J]. CSEE, 1999,19 (1) :24-27. [10] Feng Junkai, Shen juvenile court, Yang Ruichang, boiler principle and calculation of [M]. Beijing: Science Press, 2003. [11] LEVERTFE, ROBINSONJC, BARRENTYsA, a /. Slagdeposi-tionmonitorforboilerperformanceenhalleelnertI [J]. ISATrlmsac-tlor, s, 1988,27 (3) :213-221,[link widoczny dla zalogowanych], [12] Cheng Leming,[link widoczny dla zalogowanych], Luo Zhongyang,[link widoczny dla zalogowanych], Li both days, and so on. Circulating fluidized bed heat transfer experiment with the model membrane wall [J]. Engineering Thermophysics, 1998,19 (4) :514-518 .113 JASKOV [ADIMIR. AnalysisofahybridP Ⅳ Mbasedonmodifiedspace-V ~ 2tOl'andtriangle-eompariso. methods [J], IEEETransOilIA, 1997,33 (3) :754-764. [14] Bai Weidong, PROCEEDINGS, Chi Chung, et al. PCA and SVM in the flame monitoring study [J]. Proceedings of the CSEE, 2O04, 24 (2) :185-190. [15] Di Yongjie, Han Pu, Wang Dongfeng, etc., based on the loss function of SVM algorithm and its application of a minor fault diagnosis [J]. Proceedings of the CSEE, 2003,23 (9) :198-203 (He Jingfang edit)
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