Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine

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After-sales Service: Global Service
Warranty: 12 Months After Supply
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  • Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
  • Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
  • Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
  • Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
  • Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
  • Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
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  • Overview
  • Product Description
  • Product Parameters
  • Detailed Photos
  • FAQ
Overview

Basic Info.

Model NO.
1MW~60MW
Power
1MW~60MW
Generator Type
Synchronous Generator
Certification
CCC, ISO, TLC, CE
Standard
Nonstandard
Form
Impulsive
Material
Comply with Standards
Medium
Steam
Adjustment Method
Electro-Hydraulic Regulation
Transport Package
Sea and Land Transport
Specification
Different specifications
Trademark
Anhuizhengyufeng
Origin
Anhuiwuhu
Production Capacity
100

Product Description

Product Description

Steam turbine is a kind of rotating power machinery that converts the thermal energy of steam into mechanical energy, and is widely used in the field of thermal power generation.

working principle
The steam turbine is based on the thermodynamic cycle, and the blades are rotated through high-temperature and high-pressure steam to do work. The steam generated by the boiler enters the steam turbine, expands and accelerates in the nozzle or static blade, the heat energy is converted into kinetic energy, the high-speed steam hits the moving blades (rotor blades), pushes the rotor to rotate, the kinetic energy is converted into mechanical energy, and the steam turbine rotor connection drives the generator rotor to rotate for power generation output.

Combined heat and power:

Combined heat and power (CHP) uses the waste heat generated by the fuel in the power generation process, which is converted into a useful heat supply through a heat recovery device, while also generating electricity. This technology can meet the needs of heating and power supply at the same time, improving the efficiency and economy of energy use.
Generator generation: The boiler steam is used to generate electricity first, and the remaining steam heat energy is then put into a certain industrial process, and the electricity generated at the same time is also put into the industrial process, and the remaining electricity is sold to the power grid. Industries suitable for medium-temperature processes: food, paper, chemicals, farming, agriculture.
Post-power generation: The boiler steam is first used in an industrial process, and the remaining steam heat energy is then put into power generation, and the electricity generated at the same time is also put into the industrial process, and the surplus electricity is sold to the power grid.

Product Parameters

Back-pressure steam turbine
Exhaust steam from the turbine is used for heating or downstream industrial processes (cogeneration of heat and power).
 
model Power(MW) Steam inlet parameters Steam consumption(kg/kw.h) Steam intake(t/h) Speed(r/min)
Pressure(Mpa) Temperature(ºC)
B1.5-3.43/0.981 1.5 3.43 435 14.2 21.3 6500/3000
B1.5-4.9/0.981 1.5 4.9 470 11.9 17.85 6500/3000
B1.5-2.35/0.49 1.5 2.35 390 13.33 20 6500/3000
B3-0.98/0.245 3 0.981 280 16.6 49.8 3000
B3-2.35/0.29 3 2.35 390 10 30 3000
B3-2.35/0.49 3 2.35 390 12.8 38.4 3000
B3-3.43/0.49 3 3.43 435 938 29.4 6500/3000
B3-3.43/0.981 3 3.43 435 13.9 41.7 6500/3000
B3-3.43/1.57 3 3.43 435 23.2 69.6 3000
B3-3.43/2.1 3 3.43 435 37.8 113.5 3000
B3-4.9/0.981 3 4.9 470 11.4 34.2 6500/3000
B3-4.9/3.1 3 4.9 470 37.7 113.1 3000
B4.5-8.83/2.2 4.5 8.83 535 12.2 54.9 6500/3000
B6-0.98/0.245 6 0.981 280 16 96 3000
B6-3.43/0.49 6 3.43 435 9.5 57 3000
B6-3.43/0.785 6 3.43 435 12.15 72.9 3000
B6-3.43/0.981 6 3.43 435 13.77 82.6 3000
B6-3.43/1.57 6 3.43 435 21 126 3000
B6-4.9/0.49 6 4.9 470 8.63 51.8 3000
B6-4.9/0.981 6 4.9 470 11.1 66.6 3000
B7-4.9/0.7 7 4.9 470 9.55 66.9 3000
B7-4.9/1.27 7 4.9 470 12.6 88.2 3000
B7-8.83/3.63 7 8.83 535 18.28 128 6500/3000
B7-8.83/3.63 7 8.83 535 18.57 130 3000
B7-9.0/3.5 7 9 535 17.42 122 6500/3000
B7-9.2/6.7 7 9.2 535 52 364 3000
B7.5-3.43/0.49 7.5 3.43 435 9.6 72 3000
B7.5-3.43/0.785 7.5 3.43 435 12 90 3000
B7.5-3.43/0.981 7.5 3.43 435 13.67 102.5 3000
B7.5-4.9/0.49 7.5 4.9 470 8.48 63.6 3000
B7.5-4.9/0.785 7.5 4.9 470 9.65 72.4 3000
B7.5-4.9/0.981 7.5 4.9 470 10.87 81.6 3000
B9-4.9/0.49 9 4.9 470 7.9 71.1 3000
B9-8.83/5.0 9 8.83 535 27.67 249 3000
B12-3.43/0.98 12 3.43 435 13.47 161.6 3000
B12-4.9/0.49 12 4.9 470 8.14 97.7 3000
B12-4.9/0.78 12 4.9 470 9.78 117.4 3000
B12-4.9/0.98 12 4.9 470 10.49 126.8 3000
B12-4.9/1.27 12 4.9 470 12.08 145 3000
B15-9.0/0.58 15 9 535 6.45 96.8 6500/3000
B15-4.9/0.685 15 4.9 470 8.8 132 3000
B15-4.9/0.98 15 4.9 470 10.3 154.5 3000
B15-6.5/0.7 15 6.5 470 8 120 3000
B15-9.0/0.98 15 9 535 7.58 113.7 3000
B15-9.0/3.0 15 9 535 14 210 3000
B20-8.83/4.1 20 8.83 535 19.1 382 3000
B22-9.0/0.98 22 9 535 7.25 159.5 3000
B25-4.9/0.98 25 4.9 470 10.25 256.3 3000
B25-9.0/0.98 25 9 535 7.58 189.5 3000
B30-4.9/0.98 30 4.9 470 10.18 305.4 3000
B30-9.0/0.98 30 9 535 7.54 226.2 3000
B32-12.7/0.98 32 12.7 535 7.13 228.16 3000

Extraction Backpressure steam turbine
Extraction Backpressure Steam Turbine is a kind of steam power equipment with both "extraction" and "back pressure" functions, which belongs to the subdivision type of industrial steam turbine. Its core feature is to extract part of the medium-pressure steam (for heating or process needs) and at the same time directly supply the low-pressure steam that has done the work to the downstream heat user in the form of "back pressure", so as to realize combined heat and power (CHP) or industrial waste energy utilization.
model Power(MW) Steam inlet parameters Pumping      parameters Steam consumption(kg/kw.h) Speed(r/min) exhaust pressure
Pressure(Mpa) Temperature(ºC) Flow Pressure(Mpa) Flow (Mpa)
(t/h) (t/h)  
CB10-8.83/0.98/0.6 10 8.83 535 75 0.98 25 7.5 3000 0.6
CB13.6-4.9/2.5/0.98 13.6 4.9 470 152.6 2.5 12 11.22 3000 0.98
CB14.1-4.9/3.0/0.9 14.1 4.9 470 150 3 12 10.638 3000 0.9
CB15-3.43/0.98/0.53 15 3.43 435 150.2 0.98 20 10 3000 0.53
CB16-12.7/2.5/1.76 16 12.7 535 152 2.5 35 9.5 3000 1.76
CB18-9.2/2.8/0.98 18 9.2 535 160.2 2.8 40 8.9 3000 0.98
CB25-8.83/2.8/0.98 25 8.83 535 219 2.8 70 8.76 3000 0.98
CB30-9.2/3.0/0.8 30 9.2 535 239.5 3 60 7.98 3000 0.8
  
Condensing steam turbine
Exhaust steam from the turbine enters a condenser to form condensed water, which is returned to the boiler via a condensate pump for recycling and power generation.
model Power(MW) Steam inlet parameters Steam consumption(kg/kw.h) Steam intake(t/h) Speed(r/min) exhaust pressure
Pressure(Mpa) Temperature(ºC) (Mpa)
N1.2-0.155 1.2 0.155 195 9.76 11.71 3000 0.007
N4-0.88 4 0.88 280 6.5 26 3000 0.008
N6-3.43 6 3.43 435 4.6 27.6 3000 0.0076
N15-4.9 15 4.9 470 3.95 59.25 3000 0.007
N25-8.83 25 8.83 535 3.58 89.5 6500/3000 0.006
N15-3.43 15 4.9 470 4.1 61.5 3000 0.007

Extraction condensing steam turbine
Extraction Condensing Steam Turbine is a kind of steam power equipment with both "extraction" and "condensing" functions, which is an important subdivision type of industrial steam turbine.
model Power(MW) Steam inlet parameters Pumping      parameters Steam consumption(kg/kw.h) Speed(r/min) exhaust pressure
Pressure(Mpa) Temperature(ºC) Flow Pressure(Mpa) Flow (Mpa)
(t/h) (t/h)  
C12-6.5/1.2 12 6.5 470 105.3 1.2 75 7.02 3000 0.007
C15-3.43/0.98 15 3.43 435 101.5 0.98 45 6.76 3000 0.007
C20-8.83/0.98 20 8.83 535 90 0.98 45 6 3000 0.007
C25-3.43/0.98 25 3.43 435 101.5 0.98 45 6.76 3000 0.007
C30-3.43/0.98 30 3.43 435 101.5 0.98 45 6.76 3000 0.007
C55-8.83/0.98 55 8.83 535 90 0.98 45 6 3000 0.007
C60-8.83/0.98 60 8.83 535 90 0.98 45 6 3000 0.007

Detailed Photos

Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine

 

Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
Comprehensive Energy Utilization Combining Power Generation and Heat Recovery Steam Turbine
 

FAQ

1. Question: How to determine product parameters?
    Reply: Design steam turbine units with different working conditions according to the customer's current production technical parameters to meet production needs.
2. Question: How to determine product quality?
    Reply: You can do it through on-site field visits and provide relevant inspection and testing reports and other materials.
3. Question: How to ensure after-sales service?
    Reply: The company's technical staff solves difficult problems online and offline.

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