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Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant

    Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers
     
    Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers
    • Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers
    • Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers
    • Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers
    • Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers
    • Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers
    • Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers
    • Buy cheap Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant from wholesalers

    Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant

    Ask Lasest Price
    Model Number : C3-2.35/0.49/B3-2.35/0.49
    Price : USD 10000-200000/SET
    Payment Terms : T/T
    Supply Ability : 100 SETS PER MONTH
    Delivery Time : 1 month
    Brand Name : ZTIC
    • Product Details
    • Company Profile

    Suction Type 24T/H Steam Turbine Electric Generator 3000kw for power plant

    This series of turbines can simultaneously supply electric power and steam for industry usage. Both heat and electric load can be adjusted. It is especially suitable for self-support power stations and district central heat power stations in chemical, textile, sugar and paper making enterprises, where certain electric power is needed and heat load should be adjusted.


    Model

    Power

    (KW)

    Air inlet parametersExtraction parameters

    Exhaust pressure

    (MPA

    Air-consumption

    (kg/kw-h)

    Rated speed

    (r/min)

    Overall dimensions

    Pressure

    (MPA)

    Temperature

    (℃)

    Air flow

    (T/H)

    Pressure

    (MPA)

    Temperature

    (℃)

    Air flow

    (T/H)

    C3-2.35/0.4930002.35390240.49257120.00728.030004266x2555x2350
    C3-2.35/0.58830002.3539032.50.588266200.007210.8330004264x2555x2820
    C3-2.35/0.9830002.3539034.40.98310200.007211.530004319x2555x2820
    C3-3.43/0.4930003.43435280.49258200.00729.3330004266x2555x2820
    C3-3.43/0.9830003.4343527.40.98320150.00729.1330004319x2555x2820
    C6-3.43/0.4960003.4343557.50.49248450.00729.5830004266x2555x2820
    C6-3.43/0.9860003.4343566.40.98311450.007211.0730004266x2555x2820
    C6-4.9/0.4960004.9435440.49218250.00596.9330004798x2705x2460
    C6-4.9/0.9860004.943553.70.98276350.00559.030004810x2705x2460
    C12-3.43/0.49120003.43435880.49257500.00497.0430006225x3650x3650
    C12-3.43/0.98120003.43435102.10.98305600.00498.2530006225x3650x3650
    C12-4.9/0.49120004.943581.40.49202450.00496.3930006225x3650x3650
    C12-4.9-0.98120004.9435930.98270500.00497.4230006126x3650x3650

    2 Ontology Technical Requirements:

    2.1 Axis alignment error between back pressure turbine and generator is less than 0.03mm

    2.2 Turbine vibration amplitude ≤0.03mm (under the condition of generator vibration amplitude ≤0.03mm)

    2.3 The turbine shall be equipped with a thin oil station, which includes the oil tank body, AC oil pump, DC oil pump, oil cooler, oil filter, etc.

    2.4 Inlet valve type: the nozzle of the take-off valve is adjusted. When the steam turbine overspeeds, the control system can automatically close the regulating steam valve and the main steam valve through the solenoid valve.

    2.5 The coupling connecting the turbine and the generator is provided by the turbine manufacturer;

    2.6 The reverse flanges of the inlet and outlet of the turbine (including steam, cooling water, steam seal leakage, etc.) shall be provided by the turbine manufacturer.

    2.7 Main parts and components of steam turbine (but not limited to)

    2.7.1 cylinder

    The cylinder is divided horizontally, and the upper and lower cylinders are connected by flanges and bolts.Steam turbine flow part is a pair of speed stage, the upper cylinder is divided into two parts, the lower cylinder is a whole.The steam chamber is cast in the upper part of the front cylinder, and there are four regulating steam valves. The governor controls its lift through a lever.Cylinder materials are ZG20CrMo.The steam after work is discharged through the exhaust port of the lower half of the cylinder.

    2.7.2 Front and rear bearing seats:

    The front bearing pedestal and the rear bearing pedestal are respectively connected with the lower cylinder front and rear by a vertical semicircle flange to form a whole, and are arranged on the common chassis together.The rear bearing seat is fixed on the common chassis with screws to form the dead point of steam turbine thermal expansion. The front bearing seat can expand freely along the axial direction.

    2.7.3 bearing

    The front bearing of the steam turbine is radial thrust bearing, and the rear bearing is radial bearing. The central part of the bearing is lined with copper sheet for maintenance, repair and scraping.The turbine radial bearing is an elliptical tile bearing, and the working surface of the bearing is poured with Babbitt alloy, which can keep the rotor running stably.

    2.7.4 Turbine Rotor and Blade

    Steam turbine rotor is a whole rotor structure, straight blade is impulse blade, with a certain degree of reaction, are not frequency modulation blade.Blade material: 1Cr13-5, alloy stainless steel, strength and toughness to ensure that meet the requirements of superheated steam intake.

    Straight blade root, profile part and girth are milled from whole block material.

    The form of blade root is generally T-shaped blade root, T-shaped blade root with outsourcing or forked blade root.

    2.7.5 gland

    The end seal of the steam turbine is labyrinthine steel belt seal.The axial position of the seal tooth is achieved by adjusting the thickness of the axial gasket matched between the seal body and the cylinder.It is also equipped with a seal cooler to recover the leaky steam from the seal.

    2.8 The designed service life of steam turbine is more than 20 years.


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