Turbines This is heavy turbine ...Very useful..
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Small wind turbine generator. Accumulators full charge time: about 8 hours > Mast height/weight: 9m - optional /150kg > Weight: 300kgs (without mast).
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Basic Parameters Rated Power(kw) 60 Survival Wind Speed(m/s) 45 Max Power(kw) 65 Working Wind Speed(m/s) 1-25 Rated Voltage(v) 420/600 Rated Wind Speed(m/s) 10 Rated Rotation(r/min) 100 Blade Length(m) 8.6 Cut-in Wind Speed(m/s) 1 Blade Material FRP Cut-out Wind Speed(m/s) 25 Generator Life(year) 20 Some Key Technology Control Method Adjust Speed Method centrifuge variable pitch Brake Method electromagnetic Generator Generator Configuration 3-phase 380/220v 50/60hz Generation Type 3-phase permanent magnet Protect Class IP54
Pelton Turbine Generator Pelton turbine is suitable for medium and high water head power plants. The key components are: Pelton runner, main shaft and Nozzle assembly. Application Scope: Alcance de aplicaci�³n: Water Head:� 100 ~ 1700m Output:� 0.1� ~ 300MW Frequency:� 50/60HZ Runner Diameter:� 0.5 ~ 3m Lift Span 30-50 years 1.Advanced CFD, FEA technic is utilized in the designing process to ensure better technical solution. Getai Hydropower is one of the leading Pelton Turbine manufacturers. Our Pelton Turbine Generator, Pelton Turbine Efficiency, Pelton Runner has high quality and competitive price, and you can see the Application Of Pelton Turbine. CFD analysis for Pelton turbine is performed in order to predict the turbine performance. The head loss in the collecting pipe and injector assembly is calculated based on CFD analysis results. The relation of needle stroke and flow also can be calculated. CFD� analysis can improve injector� and nozzle design to reduce head los. The flow curve relative to needle stroke can be drawn based on analytical data. CFD analysis can simulate the whole procedure which flow coming into and outgoing from bucket. The flow visualization can clearly show whether water flow outgoing from bucket pressure side hit the bucket back side. Such flow situation will cause more hydraulic loss and should be avoid during runner bucket optimum design process. The torque generated by runner and pressure distribution in the bucket can be calculated based on CFD analysis results. Turbine output and efficiency is finally predicted for various operating points The possible location of cavitation can be predicted based on the pressure distribution in the bucket. The phenomena of cavitation should be avoided in the back tip of splitter by optimum design for back shape of splitter Shenyang Getai Hydropower Equipment Co.,Ltd main products: Pelton Turbine, Francis Turbine, Kaplan Turbine, Tubular Turbine, Pelton Turbine Generator, Francis Turbine Generator, Double Francis Turbine, Pelton Turbine Formula, welcome to our factory!