lin91957
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Posted: Mon 23:44, 29 Nov 2010 Post subject: timberland sale Equal incremental principle of com |
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Equal incremental principle of combining regular polyhedron method and turbine peaking power plant real bearing characteristics of the economy ...
. 4.2 units less completely shutdown state and the determination of the steam generating units running at full outage state if, when the load increased, the unit will restart from the grid has some coal consumption,[link widoczny dla zalogowanych], while unit will produce a highly heat alternating components stress cycle, reduce unit service life; and less is a generator of steam running out solutions to the rated speed rotating hot standby, when the load starts to rise after the turn and the network unit. There will be coal. According to calculation. Determine the starting grid to run a small steam power consumption characteristics of the machine is running out and the economy as follows: The first of the PROCEEDINGS, etc.】: with equal incremental principle and regular polyhedron method turbine peaking power plant bearing characteristics of the economy started 23 Table 5 to the grid when the machine is running a small steam power consumption characteristics of economic withdrawal atlas 6 Run the machine 5 Conclusion (1) with equal incremental heat rate and the regular polyhedron method of combining economic load power station turbine group with a time-allocation ,[link widoczny dla zalogowanych], convenient and fast characteristics,[link widoczny dla zalogowanych], so that real-time economic dispatch practicable Peak (2) peaking power plant steam turbine unit when the economic load allocation to meet the actual needs, and by the best distribution of load bearing characteristics of the economy can make the whole plant were obviously improved, the unit has also been improved security life (3) units economic dispatch and determine the most economical method and the results of outage states can be widely used for electric fan set of optimal operation of peaking Reference DCq ・ Ran,[link widoczny dla zalogowanych], yTransientSLmulationandAdj ~ t, Ⅱ】 emofOptimumparametersf. r200MWTarbLneUr & andReheatSystemLTade ~ L0BdChangeModeLling. Me Ⅱ s black t & Coatro [. 1995 (1) 2TheContinuativeMethodl Tsui PowerSysteanOptiimzatioe: ApplicationstOEconomySeem'ityFunctions. IEEETraasac6oa0nPowerApparit ~ sandSystems ・ 1985.104 (1) 3 Gao body width. Thermal power plants. Beijing: China Water Power Press, l9864 Kang Wu. And so on. Only multi-unit power plant optimal operation of the load to ask. China Power, 1997 (3) 5 PROCEEDINGS, maggots and other thermal power consumption with the unit line determination of the characteristics of optimizing the load distribution between the Power System Engineering. 1995 (3) Researcho111EconomicCharacteristicotRegulatingPeakLoad0nTimeforTurbineUnitsBased0ntheEDTHRITandtheEPMRatlJingyutZhangLi ・ YangLinAbstract: CombiningtheF. quivalentDifferen-tialTurbineHeatRateIncren ~ entTheory (EDTHR [T) witb ~ theEginvahntPotyh. droiRMethod (EPM),[link widoczny dla zalogowanych], theoptimumeconomicaladjustment0fregu-bringpeakloadont [r ~ e / oreachturbineinpO 'w'erp] antispresented. Atthes! Lznetime. the1] ~ quelRceandOptimumecoaomicMmodesofeachturbineunitatdre ¨ gtoadascert ~ i. ne. d. Theresu | tsazeap-piledatsiteandtheeconomicalbenefitofthepowerphmincreasedobviously. Themethodissirnp [yaadCULStherlme. KeyWOrds: EDTHRIT; EPM; regulatingpeakloadfortubineunits; ecomomicLoadcharacteristicontime Editor: Wen Chang
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