Hydropower Plant Hydropower Turbine Hydropower Generator

Product Details
After-sales Service: Provide Technical Support
Warranty: 12months
Output Type: AC Three Phase
Gold Member Since 2006

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Number of Employees
2
Year of Establishment
2012-03-21
  • Hydropower Plant Hydropower Turbine Hydropower Generator
  • Hydropower Plant Hydropower Turbine Hydropower Generator
  • Hydropower Plant Hydropower Turbine Hydropower Generator
  • Hydropower Plant Hydropower Turbine Hydropower Generator
  • Hydropower Plant Hydropower Turbine Hydropower Generator
  • Hydropower Plant Hydropower Turbine Hydropower Generator
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Basic Info.

Model NO.
LM ZDT03-LMY-100
Size
Medium
Type
Vertical Hydro Generator
Bearing Support
Hanging Type
Speed
Medium Speed
Bearing Number
3
Standard
Standard
Blade Angle
22.5 Degree
Head (M)
6.9
Discharge (M3/S)
5.924
Speed (R/Min)
500
Power (Kw)
430
Generator Type
Sf400-12/990
Transport Package
Poly Plastic Firm, Wooden Box or as Need
Specification
CE& ISO 9001 CCS CQC ISO 8528
Trademark
AVESPEED
Origin
China
Production Capacity
300 Sets/Month

Product Description

Avespeed is capable to supply various types of hydro generating plants with unit capacity below 50MW togther electric and control equipment.

Hydropower plants harness water's energy and use simple mechanics to convert that energy into electricity. Hydropower plants are actually based on a rather simple concept -- water flowing through a dam turns a turbine, which turns a generator.
Here are the basic components of a conventional hydropower plant:

The shaft that connects the turbine and generator
Dam - Most hydropower plants rely on a dam that holds back water, creating a large reservoir. Often, this reservoir is used as a recreational lake, such as Lake Roosevelt at the Grand Coulee Dam in Washington State.
Intake -on the dam open and gravity pulls the water through the penstock, a pipeline that leads to the turbine. Water builds up pressure as it flows through this pipe.
Turbine - The water strikes and turns the large blades of a turbine, which is attached to a generator above it by way of a shaft. The most common type of turbine for hydropower plants is the Francis Turbine, which looks like a big disc with curved blades. A turbine can weigh as much as 172 tons and turn at a rate of 90 revolutions per minute (rpm), according to the Foundation for Water & Energy Education (FWEE).
Generators - As the turbine blades turn, so do a series of magnets inside the generator. Giant magnets rotate past copper coils, producing alternating current (AC) by moving electrons. (You'll learn more about how the generator works later. )
Transformer - The transformer inside the powerhouse takes the AC and converts it to higher-voltage current.
Power lines - Out of every power plant come four wires: The three phases of power being produced simultaneously plus a neutral or ground common to all three. (Read How Power Distribution Grids Work to learn more about power line transmission. )
Outflow - Used water is carried through pipelines, called tailraces, and re-enters the river downstream.
The water in the reservoir is considered stored energy. When the  open, the water flowing through the penstock becomes kinetic energy because it's in motion. The amount of electricity that is generated is determined by several factors. Two of those factors are the volume of water flow and the amount of hydraulic head. The head refers to the distance between the water surface and the turbines. As the head and flow increase, so does the electricity generated. The head is usually dependent upon the amount of water in the reservoir.
Hydropower Turbine  
Generator Type
 
Governor
 
Type
 
Blade Angle
(Φ )
 
Head
(m)
 
Discharge
(m³ /s)
 
Speed
(r/min)
 
Power
(KW)
LM
ZDT03-LMY-100
22.5º 2 2.673 226 46 SF40-8/493 DST-150
2.8 3.163 268 76 SF75-8/590
3.5 3.536 300 106 SF100-20/990 DST-300
4.4 4.338 375 159 SF125-16/990
5.5 4.432 375 209 SF200-16/990
6.9 5.091 428.5 300 SF250-14/990
8.6 5.924 500 430 SF400-12/990 YT-600
25º 2.5 3.146 247 67 SF55-8/493 DST-150
3. 3.447 270 88 SF75-8/590
3.6 3.776 300 115 SF100-20/990 DST-300
4.3 4.657 375 164 SF125-16/990
5.1 4.731 375 201 SF200-16/990
6.1 5.396 428.5 272 SF250-14/990
7.3 5.377 428.5 333 SF320-14/990 YT-600
8.8 6.372 500 467 SF400-12/990
27.5º 2.5 3.347 237 69.8 SF55-8/493 DST-150
3. 3.667 260 92 SF75-8/590
3.6 4.098 300 123 SF100-20/990 DST-300
4.3 4.301 300 155 SF125-20/990
5.1 5.104 375 211 SF200-16/990
6.1 5.229 375 266 SF250-16/990
7.3 5.99 428.5 362 SF320-14/990
8. 5.988 428.5 400 SF400-14/990 YT-600
30º 3.1 4.402 300 108 SF100-20/590 DST-300
3.9 4.578 300 145 SF125-20/990
5.1 5.485 375 225 SF200-16/990 YT-600
6.1 5.592 375 279 SF250-16/990
7.6 6.534 428.5 402 SF320-14/990
9 7.287 500 527 SF500-12/1180
35º 3. 4.081 239 97 SF75-8/590 DST-300
3.6 4.47 262 128 SF100-8/590
4.3 5.064 300 172 SF160-20/990
5.1 5.16 300 258 SF200-20/990 YT-600
6.1 6.182 375 296 SF250-16/990
7.3 6.417 375 372 SF320-16/990
8.8 7.244 428.5 503 SF400-14/990
 
Hydropower Plant Hydropower Turbine Hydropower GeneratorHydropower Plant Hydropower Turbine Hydropower GeneratorHydropower Plant Hydropower Turbine Hydropower GeneratorHydropower Plant Hydropower Turbine Hydropower GeneratorHydropower Plant Hydropower Turbine Hydropower Generator

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