Product Parameters
Type of Steam Turbine |
Back Pressure Steam Turbine Generator |
Model No. of Steam Turbine |
B3-3.43/1.57 |
Rated Power |
MW |
3 |
Rated Speed |
r/min |
3000 |
Rated Steam Inlet Pressure |
Mpa(a) |
3.43 |
Rated Steam Inlet Temperature |
ºC |
435 |
Rated Steam Inlet Flow |
t/h |
69.9 |
Rated Exhaust Steam Pressure |
Mpa(a) |
1.57 |
Steam Consumption Under Rated Conditions |
kg/kw.h |
23.2 |
Max Component Weight |
t |
~12 |
Dimension |
m |
3.84*2.20*2.01 |
OEM service is available. According to customers's operation requirement, we can customized R&D, produce and supply steam turbines. |
Model |
Power
(MW) |
Steam Inlet Parameter |
Steam Consumption
(kg/kwh) |
Exhaust Steam Pressure
(Mpa) |
Speed
(r/min) |
Pressure
(Mpa) |
Temperature (ºC) |
B6-3.43/0.49 |
3 |
3.43 |
435 |
9.38 |
29.4 |
3000 |
B3-3.43/0.981 |
3 |
3.43 |
435 |
13.9 |
41.7 |
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 |
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DYNAMO |
EXCITER |
Model |
Capacity |
Voltage |
Power Factor |
Efficiency |
Power |
Voltage |
KVA |
V |
% |
kW |
V |
QFK-3-2 |
3750 |
6300 |
0.8 |
95.3 |
30 |
100 |
3150 |
QF-3-2 |
3750 |
10500 |
0.8 |
95.3 |
30 |
100 |
6300 |
QF-6-2 |
7500 |
10500 |
0.8 |
96.4 |
45 |
150 |
6300 |
QF-7-2 |
8750 |
10500 |
0.8 |
97 |
45 |
150 |
6300 |
QF-12-2 |
15000 |
10500 |
0.8 |
97 |
65 |
230 |
6300 |
QF-15-2 |
18750 |
10500 |
0.8 |
97 |
65 |
230 |
6300 |
QF-25-2 |
31250 |
10500 |
0.8 |
97.4 |
105 |
230 |
6300 |
QF-30-2 |
37500 |
10500 |
0.8 |
97.6 |
105 |
230 |
6300 |
Product Description
Backpressure steam turbine is a type of steam turbine where the exhaust steam pressure is intentionally maintained above atmospheric pressure.
Unlike condensing turbines (which exhaust steam at low pressure into a condenser), backpressure turbines discharge steam at a higher pressure, allowing the exhaust steam to be reused for process heating or district heating purposes.
This design makes them highly efficient in combined heat and power (CHP) systems.
1. Industrial CHP Systems
• Used in factories, refineries, and paper mills to generate electricity while providing steam for processes like distillation, evaporation, or heating.
• Example: A sugar mill uses backpressure turbines to generate power and supply steam for sugar refining.
2. District Heating
• Supplies high-temperature steam or hot water for residential/commercial heating in cities (e.g., Copenhagen's CHP network).
3. Mechanical Drive
• Directly powers pumps, compressors, or fans in industrial settings (e.g., in oil and gas plants)
• Steam Inlet: High-pressure steam from a boiler enters the turbine and expands through a series of nozzles and blades, converting thermal energy into mechanical shaft power (used for generating electricity or driving machinery).
• Exhaust Steam: Instead of releasing low-pressure steam into a condenser, the turbine exhausts steam at a controlled higher pressure (e.g., 0.5-5 bar, depending on the application).
• Heat Utilization: The high-temperature exhaust steam is directed to industrial processes (e.g., heating, drying, or powering other equipment) or residential/commercial heating systems, maximizing energy efficiency by eliminating "cold source losses" (common in condensing turbines).
- High Energy Efficiency: No heat loss to a condenser; exhaust steam energy is fully utilized.
- Lower Capital Cost: Simpler design (no condenser, cooling towers, or related systems).
- Compact Size: Ideal for space-constrained industrial sites.
- Reliable for Stable Heat Loads: Performs efficiently when heat demand is consistent (e.g., continuous industrial processes).
- Backpressure steam turbine is a cornerstone of sustainable energy systems, optimizing both power and heat production.
YTS's Technical Advantages
Self-Developed High-Efficiency Steam Turbine Unit
By adopting 2-4 additional pressure stages and advanced blade,nozzle,and baffle nozzle profile designs, our turbine delivers:
• Reduced stage flow distance and lower enthalpy drop per
stage, significantly decreasing steam leakage.
• Enhanced its load flexibility and overload performance.
Advanced Design of Rotor & Blades
(1) Rotor
Significantly lower vibration and failure rates compared to
other manufacturers
The rotor is numerically controlled and finely processed to completely eliminate residual stress.
(2) Blades
Ensures reliable operation under transient conditions
• Adopts variable root diameter design, allowing steam to expand smoothly along the flow-path.
• The moving blades at all stages are straight blades,together with a T-type designed impeller.
Eliminates resonant frequencies
The top of each blade is fully equipped with a band for enhanced strength.
Minimized steam leakage for enhanced internal efficiency
The blade tip features a 2-4 labyrinth seal, effectively reducing steam leakage losses.
Advanced Design of Steam Chamber & Cylinder
(3) Steam Chamber
Uniform thermal expasion of cylinder prevents front deformation and steam leakage
• Turbine steam chamber adopts an integrated design with an optimized spherical structure, delivering enhanced rationality and compactness.
• The high-pressure steam inlet chamber uses graphite ring sealing for enhanced safety and reliability.
(4) Cylinder
Fast start-up with rapid warm-up
• 30% quicker start-up than conventional designs and reducing steam loss.
• Maintain free thermal expansion during startup,shutdown and load variations.
• Integrally-cast cylinder features compact dimensions,simplified structure, and minimized leakage points.
Company Profile
Anhui Yuteshuang Energy Conservation Technology Co.,Ltd.(YTS) specilized in producing energy-saving steam turbines and optimizing thermal systems for high-consumption industries: Steel, Coking, Congeneration(CHP), Papermaking, Printing & Dyeing, Sugar, Metallurgy and Building materials, including but not limited to these indutries.
Our main business focuses on producing and optimizing the following equipment:
• R&D and manufacturing of high-efficiency and energy saving steam tubines
• Improving turbine flow-path structures to enhance power generation efficiency
• Utilizing waste heat & pressure for power generation, replacing pressure-reducing equipment
• Second-hand turbine generator sets
With a full-service team covering R&D, design,manufacturing, installation and commissioning, and after-sales maintenance,we hold 67 utility patents and 23 invention patents. Our turbines outperform other suppliers by 7%-40% in efficiency. Our core technologies and cases are featured in China's MIIT Industrial Energy-saving Technology Catalog and Guidelines, and we are a company designated by the state to provide energy-saving diagnosis services.
Certificates And Patents
FAQ
1. Q: How to determine the parameters of the steam turbine and get custom service?
A: Our technical team will help to find a suitable steam turbine solution according to your current technical requirements and energy-saving target. Customized equipment will be manufactured and tested in our factory before shipment.
2. Q: Will installation services be provided?
A: Yes. We will dispatch our technical team to your site for installation and debugging upon equipment arrival.
3. Q: Can I expect to easily access after-sales support when needed?
A: Rest assured. Our technical team provides dual-channel support(online/onsite) to resolve all potential issues. When necessary, we will promptly dispatch engineers to your site for installation and maintenance.
4. Q: Does your company welcome on-site visits?
A: Yes. We warmly welcome scheduled facility visits and will arrange every details for our meeting.
5. Q: Do you offer second-hand equipment?
A: Yes. You may browse our second-hand equipment category in the product section. Inquiries for technical details are welcome.
6. Q: Packaging Specifications
A: Seaworthy package. Standard packaging uses stretch film. Also provide custom wooden cases for specialized equipment or upon request.